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Применить Всего найдено 9571. Отображено 100.
10-06-2000 дата публикации

СИСТЕМА КОНТРОЛЯ И ЗАЩИТЫ ДИЗЕЛЬНОЙ УСТАНОВКИ

Номер: RU0000013931U1

Система контроля и защиты дизельной установки, содержащая управляемый топливный вентиль, измеритель непрерывного параметра контроля, задатчик дискретных параметров контроля, элемент сравнения с первым входом, подключенным к выходу задатчика дискретных параметров контроля, вторым входом, подключенным к первому выходу измерителя непрерывного параметра контроля, причем выход элемента сравнения подключен к запрещающему входу управляемого топливного вентиля, отличающаяся тем, что в качестве измерителя непрерывного параметра контроля применен измеритель скорости вращения, снабженный вторым выходом, в качестве задатчика дискретных параметров контроля применен задатчик контрольной скорости вращения и контрольного времени с дополнительным выходом, в систему дополнительно введены таймер контрольного времени и блок фиксации наличия экстремума скорости вращения, а второй выход измерителя скорости вращения подсоединен к первому входу блока фиксации наличия экстремума скорости вращения, второй вход которого подключен к выходу таймера контрольного времени, а выход - к разрешающему входу управляемого топливного вентиля, при этом вход таймера контрольного времени присоединен к дополнительному выходу задатчика контрольной скорости вращения и контрольного времени. (19) RU (11) 13 931 (13) U1 (51) МПК G05D 13/04 (2000.01) F02D 35/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 99122319/20, 13.10.1999 (24) Дата начала отсчета срока действия патента: 13.10.1999 (46) Опубликовано: 10.06.2000 (72) Автор(ы): Фурмаков Е.Ф., Коломнин В.В., Петров О.Ф., Степанян Н.М., Гаврилов А.Г. 1 3 9 3 1 R U (57) Формула полезной модели Система контроля и защиты дизельной установки, содержащая управляемый топливный вентиль, измеритель непрерывного параметра контроля, задатчик дискретных параметров контроля, элемент сравнения с первым входом, подключенным к выходу задатчика дискретных параметров контроля, вторым входом, ...

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20-05-2014 дата публикации

СИСТЕМА ДВИГАТЕЛЯ

Номер: RU0000140661U1

1. Система двигателя, содержащая: двигатель, содержащий первый цилиндр с первым более высоким числом преждевременных воспламенений и второй цилиндр со вторым более низким числом преждевременных воспламенений; турбонагнетатель, выполненный с возможностью обеспечения подвергнутого наддуву заряда всасываемого воздуха в двигатель; форсунку непосредственного впрыска, выполненную с возможностью осуществления непосредственного впрыска некоторого количества топлива в первый и/или второй цилиндр; и контроллер с машиночитаемыми командами для: сравнения первого и второго чисел преждевременного воспламенения; выбора общего числа преждевременных воспламенений на основании сравнения; впрыска топлива в первый цилиндр для обогащения первого цилиндра на первую величину; и впрыска топлива во второй цилиндр для обеднения второго цилиндра на вторую величину, при этом первая и вторая величины основаны на отклонении первого и второго чисел преждевременного воспламенения от общего числа преждевременных воспламенений, и первая и вторая величины регулируются для поддержания топливно-воздушного соотношения выхлопных газов двигателя на или около стехиометрии. 2. Система по п. 1, дополнительно содержащая третий цилиндр с третьим числом преждевременных воспламенений, более низким, чем первое число преждевременных воспламенений, а контроллер дополнительно включает в себя команды для впрыска топлива в третий цилиндр, чтобы обеднять третий цилиндр на третью величину, причем вторая и третья величины являются меньшими, чем первая величина, при этом первая, вторая и третья величины регулируются для поддержания топливно-воздушного соотношения выхлопных газов двигателя на или около стехиометрии. 3. Система по п. 2, в которой общее число преждевременных воспламенений дополнительно регулируется на основании содержания спиртов впрыскиваемого топлива. 4. Система по п. 2, в которой общее число преждевременных воспламенений дополнительно регулируется на основании частоты детонации первого и второго цилиндра. ...

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20-09-2014 дата публикации

Система двигателя

Номер: RU0000145307U1

1. Система двигателя, содержащая:двигатель с воспламенением от сжатия, включающий в себя камеру сгорания;топливную форсунку, непосредственно впрыскивающую топливо в камеру сгорания; исистему управления, содержащую компьютерную программу, хранимую на постоянном носителе, включающем в себя исполняемые команды для впрыска топлива в цилиндр, включающего в себя предварительные впрыски топлива, основной впрыск топлива и впрыски топлива после сгорания, в ответ на концентрацию биодизеля у топлива, подаваемого в двигатель.2. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для оценки концентрации биодизеля в ответ на температуру при восстановлении дизельного сажевого фильтра.3. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для оценки концентрации биодизеля в ответ на выходной сигнал датчика кислорода.4. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для оценки концентрации биодизеля в ответ на выходной сигнал датчика NOx.5. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для оценки концентрации биодизеля в ответ на выходной сигнал датчика давления в цилиндре.6. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для установки опережения момента впрыска топлива в ответ на повышение концентрации биодизеля.7. Система двигателя по п. 1, дополнительно содержащая дополнительные команды для оценки концентрации биодизеля в ответ на событие заправки топлива. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 145 307 U1 (51) МПК F02D 41/30 (2006.01) F02M 45/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014103597/06, 03.02.2014 (24) Дата начала отсчета срока действия патента: 03.02.2014 (72) Автор(ы): КУРТЦ Эрик Мэттью (US), ТЕННИСОН Пол Джозеф (US) 04.02.2013 US 13/758,901 (45) Опубликовано: 20.09.2014 Бюл. № 26 (54) СИСТЕМА ДВИГАТЕЛЯ R U 1 4 5 3 0 7 U 1 и систему управления ...

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10-06-2015 дата публикации

СИСТЕМА ДИАГНОСТИКИ ДАТЧИКА ВЛАЖНОСТИ

Номер: RU0000152493U1

1. Система диагностики датчика влажности, содержащая: двигатель, присоединенный к системе впуска и системе выпуска; датчик влажности; и контроллер, включающий в себя команды для: во время первого состояния, когда датчик влажности подвергается воздействию первого газового потока, настройки рабочего параметра двигателя на основании выходного сигнала датчика влажности; и во время второго состояния, когда датчик влажности подвергается воздействию второго газового потока, указания ухудшения характеристик датчика влажности, если выходной сигнал датчика влажности является иным, чем ожидаемый выходной сигнал. 2. Система по п. 1, в которой: датчик влажности расположен в системе впуска двигателя ниже по потоку от дросселя системы впуска воздуха, причем в первом состоянии дроссель системы впуска воздуха находится в полностью открытом положении, первый газовый поток содержит всасываемый воздух при барометрическом давлении, причем во втором состоянии дроссель системы впуска воздуха находится в закрытом или частично закрытом положении, и второй газовый поток содержит всасываемый воздух под меньшим, чем барометрическое, давлением. 3. Система по п. 1, в которой: датчик влажности расположен на выходе канала рециркуляции отработавших газов (EGR), причем в первом состоянии клапан EGR находится в полностью закрытом положении, первый газовый поток содержит всасываемый воздух, причем во втором состоянии клапан EGR находится в частично или полностью открытом положении, и второй газовый поток содержит отработавшие газы. 4. Система по п. 1, в которой: датчик влажности расположен в трубке вентиляции системы вентиляции картера, причем в первом состоянии давление во впускном коллекторе меньше, чем барометрическое давление, первый газовый поток содержит всасываемый воздух, причем во втором состоянии давление во впускном коллекторе больше, чем барометрическое давление, и второй газовый поток содержит воздух вентиляции картера. 5. Система по п. 1, в которой: датчик влажности расположен в трубке ...

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10-06-2015 дата публикации

Система транспортного средства

Номер: RU0000152553U1

1. Система транспортного средства, содержащая:двигатель;первую и вторую топливные системы, присоединенные к двигателю, причем первая топливная система подает первое топливо в двигатель, а вторая топливная система подает второе топливо в двигатель, при этом первое топливо отличается от второго топлива; иконтроллер, содержащий постоянные команды, исполняемые для регулировки установки момента зажигания двигателя в ответ на зависимость ограниченного детонацией в двигателе запаздывания искрового зажигания в зависимости от нагрузки двигателя, которая выводится из двух других зависимостей ограниченного детонацией в двигателе запаздывания искрового зажигания в зависимости от нагрузки двигателя.2. Система транспортного средства по п. 1, в которой две других зависимости ограниченного детонацией в двигателе запаздывания искрового зажигания в зависимости от нагрузки двигателя выражены в качестве прямых линий.3. Система транспортного средства по п. 2, в которой зависимость ограниченного детонацией в двигателе запаздывания искрового зажигания в зависимости от нагрузки двигателя выражается в качестве прямой линии.4. Система транспортного средства по п. 1, дополнительно содержащая дополнительные команды для регулировки установки момента зажигания двигателя в ответ на детонацию в двигателе.5. Система транспортного средства по п. 1, в которойзависимость ограниченного детонацией в двигателе запаздывания искрового зажигания в зависимости от нагрузки двигателя включает в себя более низкие нагрузки двигателя, при которых детонация отсутствует. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 152 553 U1 (51) МПК F02M 43/00 (2006.01) F02D 19/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014138797/06, 25.09.2014 (24) Дата начала отсчета срока действия патента: 25.09.2014 (72) Автор(ы): ЛЕОНЕ Томас Дж. (US), СУРНИЛЛА Гопичандра (US) 26.09.2013 US 14/038,555 (45) Опубликовано: 10.06.2015 Бюл. № 16 1 5 2 5 5 3 R ...

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10-06-2015 дата публикации

Система для управления лазерным зажиганием

Номер: RU0000152677U1

Предусмотрена система для настройки средствами обратной связи интенсивности лазерного излучения лазерного устройства зажигания транспортного средства с гибридным приводом. Предлагаемая система транспортного средства с гибридным приводом, содержит двигатель, включающий в себя цилиндр; электродвигатель-генератор; лазерное устройство зажигания; фотодетектор; и контроллер с машинно-читаемыми командами. Интенсивность лазерного излучения, применяемая в течение следующих друг за другом событий лазерного зажигания, понижается до тех пор, пока качество пламени не ухудшено в течение порогового количества событий сгорания в цилиндре. Интенсивность лазерного излучения затем повышается для улучшения качества пламени, и настройка средствами обратной связи повторяется снова и снова. (Фиг. 1) РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 152 677 U1 (51) МПК B60W 20/00 (2006.01) B60W 10/04 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ (21)(22) Заявка: ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2014126315/11, 27.06.2014 (24) Дата начала отсчета срока действия патента: 27.06.2014 (72) Автор(ы): МАРТИН Дуглас Рэймонд (US), МИЛЛЕР Кеннет Джеймс (US) 28.06.2013 US 13/931,249 (45) Опубликовано: 10.06.2015 Бюл. № 16 1 5 2 6 7 7 R U (57) Формула полезной модели 1. Система управления лазерным зажиганием транспортного средства с гибридным приводом, содержащая: двигатель, включающий в себя цилиндр, причем цилиндр включает в себя поршень; электродвигатель-генератор, присоединенный к аккумуляторной батарее; лазерное устройство зажигания с питанием от аккумуляторной батареи, присоединенное к головке блока цилиндров; фотодетектор, выполненный с возможностью детектирования инфракрасного излучения, присоединенный к лазерному устройству зажигания; и контроллер с машиночитаемыми командами для: при каждом событии зажигания, оценки качества пламени внутри цилиндра с использованием фотодетектора; в ответ на оцененное качество пламени, находящееся выше, чем пороговое значение, ...

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30-07-2018 дата публикации

УСТРОЙСТВО ДЛЯ РЕГУЛИРОВАНИЯ ЧАСТОТЫ ВРАЩЕНИЯ КОЛЕНЧАТОГО ВАЛА ДВИГАТЕЛЯ ВНУТРЕННЕГО СГОРАНИЯ

Номер: RU0000181951U1

Устройство предназначено для регулирования частоты вращения коленчатого вала двигателя внутреннего сгорания. Устройство содержит датчик частоты вращения (1), формирователь сигналов (2), аналого-цифровой преобразователь (3), анализатор сигналов (4), оперативное запоминающее устройство (5), дифференциатор (6), программатор (7), логический элемент «И» (8), пульт управления (9), схему сравнения (10), генератор импульсов (11), делитель частоты (12), блок управления (13), коммутатор (14), широтно-импульсный модулятор (15), усилитель мощности (16) и исполнительное устройство регулятора подачи топлива (17). Такое выполнение обеспечивает повышение качества регулирования частоты вращения коленчатого вала ДВС за счет обеспечения упреждающего воздействия по производной на положение исполнительного механизма регулятора подачи топлива с учетом скорости изменения регулируемого параметра. 1 ил. И 1 181951 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ ВУ” 184 9517 44 ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ИЗВЕЩЕНИЯ К ПАТЕНТУ НА ПОЛЕЗНУЮ МОДЕЛЬ ММ9К Досрочное прекращение действия патента из-за неуплаты в установленный срок пошлины за поддержание патента в силе Дата прекращения действия патента: 15.11.2020 Дата внесения записи в Государственный реестр: 24.09.2021 Дата публикации и номер бюллетеня: 24.09.2021 Бюл. №27 Стр.: 1 па роб Г3З | ЕП

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09-02-2012 дата публикации

Method and apparatus for operating a compression ignition engine

Номер: US20120031384A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A method for operating an internal combustion engine includes monitoring oxygen concentration in an exhaust gas feedstream, a mass flowrate of intake air, and a commanded fuel pulse of fuel. A blend ratio of biodiesel fuel and petrodiesel fuel of the fuel is determined. Engine operation is controlled in response to the blend ratio of biodiesel fuel and petrodiesel fuel of the fuel.

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16-02-2012 дата публикации

Methods and systems for adaptively cooling combustion chambers in engines

Номер: US20120037100A1
Принадлежит: McAlister Technologies LLC

The present disclosure is directed to various embodiments of systems and methods for cooling a combustion chamber of an engine. One method includes introducing fuel into the combustion chamber of an engine having an energy transfer device that moves through an intake stroke, a compression stroke, a power stroke, and an exhaust stroke. The method further includes monitoring a temperature of the combustion chamber. When the temperature reaches a predetermined value, the method also includes introducing coolant into the combustion chamber only during at least one of the power stroke and the exhaust stroke of the energy transfer device.

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01-03-2012 дата публикации

Controller for and method of controlling internal combustion engine

Номер: US20120053819A1
Принадлежит: Toyota Motor Corp

Heat generation amount PV κ (θ) is calculated with the use of cylinder pressure P(θ), detected by a cylinder pressure sensor, cylinder, volume V(θ), and specific heat ratio κ (steps 100 to 102 ). A crank angle θ fix , at which the value of PV κ (θ) peaks, is determined as a start crank angle, at which an adiabatic process after combustion starts (step 104 ). A correction coefficient K fix is calculated based on the variation of the value of PV κ (θ) after θ fix (step 106 ). An actual heat generation amount PV κ (θ) is calculated with the use of the correction coefficient K fix (step 110 ). A cooling loss coefficient K cool that determines a correlation between the cooling loss and crank angles may be calculated based on a water temperature and an engine speed and the actual heat generation amount PV κ fix (θ) may be made to reflect the cooling loss coefficient K cool .

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15-03-2012 дата публикации

Method and circuit for processing a signal supplied by a piezoelectric sensor, and pressure-measuring device for piston engine

Номер: US20120060595A1

A method and a circuit for processing a signal supplied by a piezoelectric sensor ( 10 ) indicating the cylinder pressure of a piston engine such as a heat engine. Undesirable variations in the value of the signal supplied by the sensor and corresponding to plateaux in the pressure are compensated by a closed-loop servo control which is suitable for setting an output signal to a predetermined constant reference value, independently of undesirable variations in the signal from the sensor ( 10 ). The value of the output signal is sampled, and at each sampling moment, if the absolute value of the variation in the output signal is less than a comparison value, the servo control is kept active. A circuit for processing and a pressure-measuring device including a circuit of this kind is also described.

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29-03-2012 дата публикации

Method and system for pre-ignition control

Номер: US20120073542A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for mitigating engine pre-ignition based on a feed-forward likelihood of pre-ignition and feedback from a pre-ignition event. In response to an indication of pre-ignition, a cylinder may be enriched while an engine load is limited. The enrichment may be followed by an enleanment to restore exhaust catalyst feed-gas oxygen levels. The mitigating steps may be adjusted based on engine operating conditions, a pre-ignition count, as well as the nature of the pre-ignition.

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03-05-2012 дата публикации

Combustion balancing control strategy using normalized instantaneous heat release in hcci engines

Номер: US20120103304A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A method for controlling combustion in a multi-cylinder internal combustion engine operating in a controlled auto-ignition mode includes providing combustion control parameters, determining peak cylinder pressures and crank angle location of the peak cylinder pressures. Cylinder volumes at the peak cylinder pressures and at intake valve closings are determined and cylinder pressures at intake valve closings are determined. A combustion parameter for each cylinder is calculated based upon the peak cylinder pressure, the cylinder pressure at the intake valve closing, the crank angle location of the peak cylinder pressure, the cylinder volume coincident with the peak cylinder pressure, and the cylinder volume at the intake valve closing. A target combustion parameter is determined and the calculated combustion parameter for each cylinder is compared to the target combustion parameter. The provided combustion control parameters for each cylinder are adjusted to balance the combustion parameter across all cylinders based on the comparison. The engine is controlled based on the adjusted provided combustion control parameters.

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10-05-2012 дата публикации

Igniter with integral pressure sensing line

Номер: US20120110975A1
Автор: Hannes A. Alholm
Принадлежит: United Technologies Corp

An igniter device for a combustor system includes an igniter housing and a pressure sense passage. The igniter housing surrounds an electrode and an insulating body. The igniter has a tip to be positioned within a chamber for combustion. The pressure sense passage is attached to an exterior surface of the igniter housing. The pressure sense passage is configured to direct fluid to a pressure sensor.

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07-06-2012 дата публикации

Combustion control apparatus of internal combustion engine

Номер: US20120143479A1
Автор: Mitsuhiro Nada
Принадлежит: Toyota Motor Corp

During high-load operation of an engine, fuel for initial slow-burning combustion and premixed combustion is injected into a combustion chamber by continuous fuel injection, then fuel injection is paused, and fuel for diffusion combustion is injected after a predetermined interval has elapsed. Also, the fuel injection amount in the continuous fuel injection is set higher than the fuel injection amount for diffusion combustion. A spray autointerference cooling effect is achieved by the continuous fuel injection, thus promoting ignition delay so as to increase the proportion of premixed combustion, thereby suppressing the production of smoke. This enables high-volume EGR to be performed, thus enabling reducing the amount of NOx produced.

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26-07-2012 дата публикации

Injection fuel and load balancing control system

Номер: US20120191325A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A method for correcting main fuel injection quantities in an internal combustion engine in a plurality of cylinders of the engine includes monitoring a desired fuel injection quantity for the plurality of cylinders, monitoring an in-cylinder pressure for each of the cylinders, determining a burnt fuel mass resulting from a main fuel injection for each of the cylinders based upon the in-cylinder pressures, determining a fuel injection quantity correction for each of the cylinders based upon the burnt fuel masses, and controlling fuel injections into the plurality of cylinders based upon the desired fuel injection quantity and the fuel injection quantity correction for each of the cylinders.

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16-08-2012 дата публикации

Method for cylinder equalization in a multi-cylinder internal combustion engine

Номер: US20120204830A1

A method is provided for equalizing the cylinders of a multi-cylinder internal combustion engine. The internal combustion engine is configured as a reciprocating engine having direct injection and spark ignition. A fuel mass is injected in a cylinder-specific manner, and a cylinder-specific air mass and a cylinder-specific ignition time are each adjustable. An injection amount is equalized, then a charge is equalized and then a mean combustion pressure is equalized.

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16-08-2012 дата публикации

Variable valve lift mechanism fault detection systems and methods

Номер: US20120209494A1
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A system for a vehicle includes a filtering module, an indicated mean effective pressure (IMEP) determination module, and a stuck mechanism indicator module. The filtering module generates engine speeds based on positions of teeth of a toothed wheel that rotates with a crankshaft and based on a crankshaft position signal generated by a crankshaft position sensor. The IMEP determination module determines an IMEP for a combustion cycle of a cylinder of an engine based on squares of first and second ones of the engine speeds during the combustion cycle. The stuck mechanism indicator module selectively diagnoses a fault in a variable valve lift (VVL) mechanism of the cylinder based on the IMEP.

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30-08-2012 дата публикации

Controller for internal combustion engine

Номер: US20120221225A1
Принадлежит: Denso Corp

When an engine is driven in a compression self-ignited combustion region, a fuel injector injects a fuel into a cylinder in a negative-valve-overlap period where an exhaust valve and an intake valve are both closed. Then, the fuel is injected into the cylinder in an intake stroke. The injected fuel is compressed in a compression stroke to be self-ignited. When it is determined that a steep combustion occurs and a fuel injection quantity in the negative-valve-overlap period is greater than a lower determination threshold, the fuel injection quantity in the negative-valve-overlap period is reduced. When the fuel injection quantity is not greater than the lower determination threshold, an oxygen quantity in the cylinder is reduced.

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25-10-2012 дата публикации

Method and System for Pre-Ignition Control

Номер: US20120266847A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for addressing cylinder pre-ignition by adjusting a spray angle of fuel injected into a cylinder responsive to an indication of pre-ignition. A spray pattern of fuel injected in the cylinder is varied based on a cylinder pre-ignition count to reduce cylinder wall impingement of injected fuel while improving air-fuel mixing in the cylinder.

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01-11-2012 дата публикации

Cylinder pressure parameter correcting systems and methods

Номер: US20120277970A1
Автор: Allen B. Rayl
Принадлежит: GM GLOBAL TECHNOLOGY OPERATIONS LLC

A system includes a net mean effective pressure (NMEP) error module, a correction determination module, a mean effective pressure (MEP) correction module, and an actuator control module. The NMEP error module determines an NMEP error for a combustion cycle of a cylinder based on an expected NMEP for the combustion cycle, a measured NMEP for the combustion cycle, and a difference between an expected change in an engine speed for the combustion cycle and a measured change in the engine speed for the combustion cycle. The correction determination module determines an offset correction and a slope correction based on the NMEP error. The MEP correction module that generates a corrected NMEP for the combustion cycle based on the measured NMEP, the offset correction, and the slope correction. The actuator control module controls an engine operating parameter based on the corrected NMEP.

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13-12-2012 дата публикации

Fuel management system for variable ethanol octane enhancement of gasoline engines

Номер: US20120312284A1
Принадлежит: Massachusetts Institute of Technology

Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency of the engine.

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27-12-2012 дата публикации

Fuel injection controller and internal combustion engine

Номер: US20120330537A1
Автор: Takeshi Hashizume
Принадлежит: Toyota Motor Corp

An ECU of a fuel injection controller acquires information on a load of an internal combustion engine including a fuel injection valve. Based on the load information, a switch is made between low-load-condition control, in which a main injection is performed at a timing that avoids a spray injected by a pilot injection that drifts due to a swirl effect, and high-load condition control, in which the main injection is performed at a timing that interferes with (at least partially overlaps) a spray injected by the pilot injection that drifts due to a swirl effect. In the low-load-condition control, the spray injected by a pilot injection is diffused before the occurrence of ignition to reduce smoke. In the high-load condition control, the spray injected by the main injection is caused to interfere with the spray injected by the pilot injection that contains OH radicals, to reduce smoke.

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10-01-2013 дата публикации

Method and system for controlling fuel usage

Номер: US20130008410A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for improving fluid usage while addressing knock by adjusting the use of spark retard and direct injection of a fluid based on engine operating conditions and the composition of the injected fluid. One or more engine parameters, such as EGR, VCT, boost, throttle position, are coordinated with the direct injection to reduce torque and EGR transients.

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21-03-2013 дата публикации

Dynamic estimator for determining operating conditions in an internal combustion engine

Номер: US20130073173A1
Принадлежит: ROBERT BOSCH GMBH

Methods and systems are provided for estimating engine performance information for a combustion cycle of an internal combustion engine. Estimated performance information for a previous combustion cycle is retrieved from memory. The estimated performance information includes an estimated value of at least one engine performance variable. Actuator settings applied to engine actuators are also received. The performance information for the current combustion cycle is then estimated based, at least in part, on the estimated performance information for the previous combustion cycle and the actuator settings applied during the previous combustion cycle. The estimated performance information for the current combustion cycle is then stored to the memory to be used in estimating performance information for a subsequent combustion cycle.

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04-04-2013 дата публикации

NOx EMISSION ESTIMATION METHOD AND ARRANGEMENT

Номер: US20130085733A1
Принадлежит: Volvo Car Corp

A NO x emission estimation method and arrangement for a diesel engine for estimating the amount of NO x generated in a combustion chamber of the diesel engine. The method comprises the steps of: providing values for speed and load by measuring the engine speed and the fuel injection amount; providing a base NO x value from an engine speed-load resolved reference NO x map; defining and providing emission influencing input parameters by measuring corresponding signal values; calculating a deviation between at least one emission influencing input parameter and a speed-load resolved reference value for the at least one emission influencing input parameter; multiplying the calculated deviation with an individual value from an individual speed-load resolved weight map for the at least one emission influencing input parameter, thereby creating an emission influencing input parameter related correction for the at least one emission influencing input parameter; adding and summarizing the at least one emission influencing input parameter related correction to the base NO x value and thereby obtaining an estimated NO x mass flow value.

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06-06-2013 дата публикации

Method and system for pre-ignition control

Номер: US20130139786A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for addressing pre-ignition that may be induced in response to actions taken to mitigate a cylinder misfire. An amount of engine load limiting applied may be adjusted to reduce the likelihood pre-ignition while also addressing component over-temperature issues. By limiting an engine load while shutting off fuel in a misfiring cylinder, and while combusting a lean air-fuel mixture in the remaining cylinders, pre-ignition induced by the misfire-mitigating lean combustion conditions can be reduced.

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27-06-2013 дата публикации

Method and Device For Operating A Cold Start Emission Control Of An Internal Combustion Engine

Номер: US20130166186A1
Принадлежит: ROBERT BOSCH GMBH

A method for operating a cold start emission control of an internal combustion engine, a combustion chamber pressure in at least one cylinder of the internal combustion engine being initially detected, at least one characteristic variable for a combustion process of the internal combustion engine being determined based on the detected combustion chamber pressure, a setpoint value being established for the characteristic variable, a deviation of the characteristic variable from the setpoint value being determined, and an error entry being generated as a function of the determined deviation.

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04-07-2013 дата публикации

ACCELERATION SHOCK REDUCTION CONTROL DEVICE, AND METHOD AND PROGRAM PRODUCT FOR CONTROLLING ACCELERATION SHOCK REDUCTION

Номер: US20130173141A1
Принадлежит: SUZUKI MOTOR CORPORATION

An acceleration shock reduction control device, which reduces an acceleration shock occurring when a vehicle shifts from a deceleration state to an acceleration state, includes a first detector that detects rotation information of an engine mounted on the vehicle, a second detector that detects rotation information of a driving wheel which rotates by an output transmitted from the engine, and a controller that performs control to reduce the acceleration shock based on deviation information between the rotation information detected by the first detector and the rotation information detected by the second detector. 1. An acceleration shock reduction control device which reduces an acceleration shock occurring when a vehicle shifts from a deceleration state to an acceleration state , the acceleration shock reduction control device comprising:means for detecting rotation information of an engine mounted on the vehicle;means for detecting rotation information of a driving wheel which rotates by an output transmitted from the engine; andmeans for performing control to reduce the acceleration shock based on deviation information between the rotation information detected by the means for detecting rotation information of the engine and the rotation information detected by the means for detecting rotation information of the driving wheel.2. The acceleration shock reduction control device according to claim 1 , further comprisingmeans for calculating rotation information which converts the rotation information detected by the means for detecting rotation information of the driving wheel to rotation information of the engine to calculate the rotation information,wherein the deviation information is a rotation difference value between the rotation information detected by the means for detecting rotation information of the engine and the rotation information calculated by the means for calculating rotation information.3. The acceleration shock reduction control device according ...

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04-07-2013 дата публикации

VEHICLE CONTROL DEVICE

Номер: US20130173142A1
Автор: KATO Hirokazu
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A vehicle control device includes an engine that is a power source of a vehicle, an electrical storage device, a starting device connected to the electrical storage device and configured to consume electrical power to start the engine, and a power steering device connected to the electrical storage device and configured to consume electrical power to generate an assist torque, wherein an engine stop control of causing the engine to be in a stopped state is executable during travelling of the vehicle, and the engine stop control is prohibited in at least one of time of turning of the vehicle, time of steering of the vehicle during travelling, and time of generating an assist torque during travelling. 1. A vehicle control device comprising:an engine that is a power source of a vehicle;an electrical storage device;a starting device connected to the electrical storage device and configured to consume electrical power to start the engine; anda power steering device connected to the electrical storage device and configured to consume electrical power to generate an assist torque, whereinan engine stop control of causing the engine to be in a stopped state is executable during travelling of the vehicle, andthe engine stop control is prohibited in at least one of time of turning of the vehicle, time of steering of the vehicle during travelling, and time of generating an assist torque during travelling.2. The vehicle control device according to claim 1 , wherein the prohibition of the engine stop control is determined on the basis of an assist current value of the power steering device.3. The vehicle control device according to claim 2 , wherein the engine stop control is prohibited when the assist current value exceeds a current value defined in advance.4. The vehicle control device according to claim 2 , wherein the engine stop control is prohibited on the basis of a changing speed of the assist current value.5. The vehicle control device according to claim 2 , whereinthe ...

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11-07-2013 дата публикации

Method and device for operating a lubricating system of a combustion engine

Номер: US20130179049A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

The application relates to a method for operating a lubricating system of a combustion engine in a motor vehicle, the engine having a variably controllable oil pump and a plurality of piston cooling jets. The oil pressure may be adjusted based on operating conditions to activate and de-activate the piston cooling jets when needed.

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11-07-2013 дата публикации

SENSOR SIGNAL PROCESSING DEVICE

Номер: US20130179052A1
Принадлежит: DENSO CORPORAITON

A microcomputer is formed of a CPU and a detection circuit and inputs sensor signals of a vibration sensor and a rotation sensor. The detection circuit includes an AD converter circuit for AD conversion of the sensor signal of the vibration sensor at a predetermined sampling interval, a peak hold circuit for detecting a peak value of the sensor signal, a RAM for storing the peak value, a counter for detecting a crank angle at a peak value detection time, and an angle calculation part. The microcomputer divides a pre-ignition check interval into plural interval units and checks the pre-ignition based on the peak value detected in each unit interval. The pre-ignition and the knock are checked by using different threshold values in an interval, in which the pre-ignition check interval overlaps a knock check interval. 1. A sensor signal processing device comprising:an AD conversion part for converting an analog sensor signal outputted from a sensor, which detects a combustion condition in a cylinder of an engine, into a digital signal;a pre-ignition check interval setting part for setting a pre-ignition check interval in synchronism with a crank angle indicated by a rotation sensor signal, which varies with a rotation of a crankshaft of the engine;a crank angular interval setting part for setting a plurality of crank angular intervals by dividing the pre-ignition check interval;a time measuring part for measuring elapse time in the plurality of crank angular intervals;a peak value detection part for detecting a peak value of the digital signal outputted from the AD conversion part in each of the plurality of crank angular intervals;a crank angle calculation part for calculating a peak value detection crank angle, at which the peak value is detected in each of the plurality of crank angular intervals, based on the elapse time measured by the time measuring part until the peak value is detected by the peak value detection part; anda memory part for storing the peak value ...

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18-07-2013 дата публикации

Method and Control Unit for Controlling an Internal Combustion Engine

Номер: US20130180506A1
Принадлежит: Continental Automotive GmbH

A method and a control unit are disclosed for controlling a single-cylinder or multiple-cylinder internal combustion engine having at least one fuel injector per cylinder, at least one camshaft for actuating inlet valves and/or outlet valves, and having a control unit which controls the fuel injectors in such a way that they inject in each case one fuel pre-injection per cylinder during a starting phase of the internal combustion engine. In order to make an improved pre-injection strategy possible during the starting phase, according to the invention at least one cylinder pressure signal which is supplied by a cylinder pressure sensor for measuring the pressure in a cylinder is evaluated with regard to interference signals, and the evaluation result is taken into consideration at least during the starting phase in a determination of the camshaft angle.

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18-07-2013 дата публикации

ENGINE REMOTE START CONTROL METHOD AND SYSTEM

Номер: US20130184970A1
Автор: Kanafani Fadi S.
Принадлежит:

A method is provided and may include monitoring operation of an engine of a vehicle, determining if the engine is started, and determining if the engine was started via an ignition or via a remote signal. The method may further include controlling operation of the engine at a first temperature if the engine was started via the ignition and controlling operation of the engine at a second temperature—different than the first temperature—if the engine was started via the remote signal. The second temperature may be higher than the first temperature to increase a temperature of coolant circulating within the engine. 1. A method comprising:monitoring operation of an engine of a vehicle;determining if said engine is started;determining if said engine was started via an ignition or via a remote signal;controlling operation of said engine at a first temperature if said engine was started via said ignition; andcontrolling operation of said engine at a second temperature, different than said first temperature, if said engine was started via said remote signal, said second temperature being higher than said first temperature to increase a temperature of coolant circulating within said engine.2. The method of claim 1 , wherein said controlling operation of said engine at said second temperature increases a temperature of coolant circulating within said engine and to an HVAC system of said vehicle.3. The method of claim 1 , wherein said controlling operation of said engine at said second temperature includes controlling a spark-plug timing.4. The method of claim 3 , wherein said controlling said spark timing includes initiating a spark in said engine at a later time during a stroke of said engine when compared to operating said engine at said first temperature.5. The method of claim 1 , wherein said controlling operation of said engine at said second temperature includes controlling at least one of an exhaust valve and an intake valve of said engine.6. The method of claim 5 , ...

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25-07-2013 дата публикации

METHOD FOR CONTROLLING A VEHICLE ENGINE

Номер: US20130191011A1
Принадлежит:

A method and apparatus for controlling a vehicle engine during conditions detrimental to the engine such as e.g., high engine speed with high oil temperature and/or low oil pressure. In addition to protecting the engine, the method and apparatus will also improve the vehicle's fuel economy. 1. A method of detecting and modifying an engine oil condition in a vehicle , said method comprising:determining that the engine oil condition may be detrimental at a current engine speed; andreducing the engine speed by a predetermined amount if it is determined that the engine oil condition may be detrimental at the current engine speed.2. The method of claim 1 , wherein the oil condition is high oil temperature.3. The method of claim 2 , wherein the engine speed is reduced by a predetermined amount based on the temperature of the oil.4. The method of claim 2 , wherein the step of reducing the engine speed comprises:determining a redline RPM offset based on the oil temperature; andsubtracting the redline RPM offset from a redline RPM limit for the engine.5. The method of claim 2 , wherein the step of reducing the engine speed comprises determining a new redline RPM limit for the engine based on the oil temperature.6. The method of claim 1 , wherein the oil condition is low oil pressure.7. The method of claim 6 , wherein the engine speed is reduced by a predetermined amount based on the oil pressure.8. The method of claim 6 , wherein the step of reducing the engine speed comprises:determining a redline RPM offset based on the oil pressure; andsubtracting the redline RPM offset from a redline RPM limit for the engine.9. The method of claim 6 , wherein the step of reducing the engine speed comprises determining a new redline RPM limit for the engine based on the oil pressure.10. The method of claim 1 , wherein reducing the engine speed comprises adjusting an electronic throttle.11. The method of claim 1 , wherein reducing the engine speed comprises cutting off fuel to the engine. ...

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01-08-2013 дата публикации

SUPERVISORY CONTROL SYSTEM FOR SERIES TYPE HYBRID-ELECTRIC POWERTRAINS

Номер: US20130197780A1
Автор: Oehlerking Dale A.
Принадлежит:

A method of operating a series type hybrid-electric powertrain having an internal combustion engine, a generator, and a battery is provided. A state of charge level of a battery is estimated. The state of charge level estimate is compared to a first threshold. An internal combustion engine operates at a first engine speed setpoint and a first engine torque output setpoint when the state of charge level estimate is below the first threshold. The state of charge level estimate is compared to a second threshold. The second threshold is a lower state of charge level than the first threshold. The internal combustion engine operates at a second engine speed setpoint and a second engine torque output setpoint when the state of charge level estimate is below the second threshold. The internal combustion engine generates more torque at the second torque output setpoint. 1. A method of operating a series type hybrid-electric powertrain having an internal combustion engine , a generator , and a battery , the method comprising:estimating a state of charge level of a battery;comparing the estimated state of charge level to a first threshold;operating an internal combustion engine at a first engine speed setpoint and a first engine torque output setpoint when the estimated state of charge level is below the first threshold;comparing the estimated state of charge level to a second threshold, the second threshold being a lower state of charge level than the first threshold; andoperating the internal combustion engine at a second engine speed setpoint and a second engine torque output setpoint when the estimated state of charge level is below the second threshold, wherein the internal combustion engine generates more torque at the second torque output setpoint.2. The method of operating a series type hybrid-electric powertrain having an internal combustion engine claim 1 , a generator claim 1 , and a battery of claim 1 , wherein the generator provides a load on the internal ...

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08-08-2013 дата публикации

Method for determining the proportion of gaseous working medium in the cylinder of an internal combustion engine

Номер: US20130204509A1

A method for determining the proportion of gaseous working medium in a cylinder of an internal combustion engine includes opening an injector so as to feed fuel directly into the cylinder. The injector is connected to a fuel line in which a pressure sensor is arranged. The pressure in the fuel line is measured when the injector is open. The proportion of gaseous working medium in the cylinder is determined in conjunction with an association between the measured pressure in the fuel line when the injector is open and the proportion of gaseous working medium in the cylinder.

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15-08-2013 дата публикации

ENGINE FUEL ECONOMY UNIT

Номер: US20130211643A1
Принадлежит: ZETA AUTOMOTIVE LIMITED

A fuel economy unit () is disclosed for an engine system comprising an internal combustion engine or electric motor having a demand input, an output member drivable by the engine, and a user-operable demand control () for providing a demand signal (PP) coupled to the engine demand input to control the engine output. The fuel economy unit receives an input signal (D) indicative of acceleration of the output member, or from which acceleration of the output member can be derived, and modifies the coupling of the demand signal to the engine demand input in dependence on the acceleration of the output member to limit the acceleration of the output member. 1. A fuel economy unit for an engine system comprising an engine having a demand input , an output member drivable by the engine , and a user-operable demand control for providing a demand signal coupled to the engine demand input to control the engine output , the fuel economy unit comprising:means for receiving an input signal indicative of acceleration of the output member or from which acceleration of the output member can be derived; andmeans for modifying the coupling of the demand signal to the engine demand input in dependence upon the acceleration of the output member to limit the acceleration of the output member.2. A fuel economy unit as claimed in claim 1 , wherein:the modifying means is operable to modify the demand signal to represent a lesser demand when the acceleration of the output member reaches an acceleration threshold value.3. A fuel economy unit as claimed in claim 1 , wherein:the modifying means is operable to modify the demand signal to represent a progressively reducing demand while the acceleration of the output member exceeds an acceleration threshold value.4. A fuel economy unit as claimed in claim 2 , wherein:the acceleration threshold value is preset.5. A fuel economy unit as claimed in claim 1 , wherein:the input receiving means, or a further input receiving means, is arranged to receive ...

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12-09-2013 дата публикации

VEHICLE CONTROL APPARATUS AND VEHICLE CONTROL METHOD

Номер: US20130238216A1
Принадлежит: ADVICS CO., LTD.

Force of depressing operation of a brake pedal is estimated on the basis of an output torque of an internal-combustion engine computed by an engine ECU and acceleration of a vehicle detected by an acceleration sensor. When the estimated force of the depressing operation of the brake pedal is greater than or equal to a second determination value and the amount of depressing operation of an accelerator pedal detected by an accelerator operation amount sensor is greater than or equal to a first determination value, the output torque of the internal-combustion engine is restricted. Accordingly, acceleration and start of the vehicle due to simultaneous depressing of the accelerator pedal and the brake pedal can be restricted without providing a sensor for detecting the amount of the depressing operation of the brake pedal. 1. A vehicle control apparatus applied to a vehicle including an internal-combustion engine as a driving source , an acceleration sensor , which detects vehicle acceleration , and an accelerator operation amount sensor , which detects an amount of a depressing operation of an accelerator pedal , the vehicle control apparatus comprising:an output computing section, which computes an output torque of the internal-combustion engine;a depressing force estimating section, which estimates a force of a depressing operation of a brake pedal of the vehicle, on the basis of the vehicle acceleration detected by the acceleration sensor and the output torque computed by the output computing section; anda torque restricting section, which restricts a driving torque transmitted from the internal-combustion engine to an axle of the vehicle when the amount of the depressing operation of the accelerator pedal detected by the accelerator operation amount sensor is greater than or equal to a first determination value and the force of the depressing operation of the brake pedal estimated by the depressing force estimating section is greater than or equal to a second ...

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03-10-2013 дата публикации

CONTROL DEVICE OF A MOTOR VEHICLE

Номер: US20130261940A1
Автор: Gruener Florian

A control device of a motor vehicle, for controlling and/or regulating at least the operation of an internal combustion engine, wherein, before the execution of at least one defined function and/or during the execution of at least one defined function, the control device demands operation of the internal combustion engine in a defined operating state, and wherein, as a function of the length of time for which the respective defined function has not been executed and/or as a function of the length of time for which a defined operating state of the internal combustion engine has not occurred, the control device determines a defined characteristic variable, on the basis of which the control device, in a temporally variable manner, determines different and/or variable measures for influencing the operating state of the internal combustion engine. 1. A control device of a motor vehicle , for controlling and/or regulating at least the operation of an internal combustion engine of the motor vehicle , wherein , before the execution of at least one defined function and/or during the execution of at least one defined function , the control device demands operation of the internal combustion engine in a defined operating state , wherein , as a function of a length of time for which the respective defined function has not been executed and/or as a function of the length of time for which a defined operating state of the internal combustion engine has not occurred , the control device determines a defined characteristic variable , on the basis of which the control device , in a temporally variable manner , determines different and/or variable measures for influencing the operating state of the internal combustion engine.2. The control device as claimed in claim 1 , wherein claim 1 , when the internal combustion engine is running and when the respective defined function is not being executed and/or when the defined operating state of the internal combustion engine is not present ...

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24-10-2013 дата публикации

Variable venturi and zero droop vacuum assist

Номер: US20130276751A1
Автор: Jason J. Raasch
Принадлежит: Briggs and Stratton Corp

An engine includes a carburetor including a variable venturi having a fixed surface and an adjustable surface that form a constricted section, a throttle valve downstream of the variable venturi, a governor assembly including a governor configured to detect an engine speed of the engine, a governor arm coupled to the governor, the venturi, and the throttle valve, and a governor spring coupled to the governor arm to bias the throttle valve towards the fully open position, and a vacuum actuator including an actuator linkage coupled to the governor spring and also coupled to a pressure-sensitive member for movement with the pressure-sensitive member in response to an engine vacuum, and an actuator spring biasing the actuator linkage to increase the tension on the governor spring.

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31-10-2013 дата публикации

METHOD AND SYSTEM FOR CONTROLLING FUEL USAGE

Номер: US20130284145A1
Принадлежит:

Methods and systems are provided for improving fuel usage while addressing knock by adjusting the use of spark retard and direct injection of a fluid based on engine operating conditions and the composition of the injected fluid. One or more engine parameters, such as EGR, VCT, boost, throttle position, are coordinated with the direct injection to reduce torque and EGR transients. 1. A method of operating an engine comprising ,adjusting a direct water injection to an engine cylinder;during a first water injection timing, adjusting an engine throttle by a first amount based on an amount of water injected; andduring a second, later, water injection timing, adjusting the engine throttle by a second, lesser, amount based on the amount of water injected.2. The method of claim 1 , wherein a water injection amount is adjusted based on engine knock.3. The method of claim 1 , wherein a water injection amount is adjusted based on claim 1 , desired engine dilution claim 1 , and EGR transients.4. The method of claim 1 , wherein the second claim 1 , later claim 1 , timing is with respect to intake valve closing (IVC).5. The method of claim 4 , further comprising adjusting the water injection timing later from IVC as knocking increases.6. The method of claim 4 , further comprising retarding the water injection timing from IVC as the desired dilution increases.7. The method of claim 1 , wherein the first injection timing is more retarded from IVC than the second injection timing.8. The method of claim 1 , wherein the second injection timing is before IVC.9. The method of claim 1 , wherein at least part of the second injection timing is before IVC.10. A method of operating an engine comprising claim 1 ,direct injecting an amount of knock control fluid to a cylinder of the engine based on engine operating conditions; andadjusting an engine throttle position of a throttle downstream of a compressor based on the injection amount, injection timing, and fluid composition.11. The method ...

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07-11-2013 дата публикации

Systems and vehicles incorporating improved engine cooling and energy generation

Номер: US20130291826A1
Автор: Roy Edward McAlister
Принадлежит: McAlister Technologies LLC

Internal combustion engines and vehicles incorporating the same, wherein the engine comprises a first combustion chamber having an intake and an exhaust port. An energy transfer device moves relative to the combustion chamber through a cycle comprising an intake stroke, a compression stroke, a power stroke, and an exhaust stroke. An injector injects fuel into the combustion chamber during at least one of the intake stroke and the compression stroke and an ignition feature ignites the fuel in the combustion chamber. A sensor detects a temperature of the combustion chamber and when the temperature reaches a predetermined value, the injector is configured to inject a working fluid directly into the combustion chamber during at least one of the power stroke and the exhaust stroke. The exhaust port of the first combustion chamber is fluidically coupled to an intake of a second combustion chamber.

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14-11-2013 дата публикации

Method for reducing emission of pollutants from an internal combustion engine, and fuel emulsion comprising water and a liquid hydrocarbon

Номер: US20130298449A1
Принадлежит: Cam Tecnologie SpA

A fuel emulsion has a liquid hydrocarbon fuel, water, at least one emulsifier and at least one oxygen-containing water soluble organic compound. In the fuel emulsion, water is present in an amount not greater than 15% by weight, and the emulsifier is selected from a product obtained by reacting (a1) a polyolefin oligomer functionalized with at least one group deriving from a dicarboxylic acid, or a derivative thereof, with (a2) a polyoxyalkylene comprising linear oxyalkylene units. In the fuel emulsion, the oxygen-containing water soluble organic compound is present in a predetermined amount so as to obtain an amount of water soluble organic oxygen of from 0.1 to 5% by weight. A considerable reduction of particulate emissions is obtained by using this fuel emulsion while maintaining or even further reducing the NOx level which is already reduced by the engine itself.

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28-11-2013 дата публикации

Start-Up Possibility Determining Apparatus and Start-Up Possibility Determining Method

Номер: US20130317729A1
Принадлежит:

A start-up possibility determining apparatus that determines an engine-start-up possibility by driving a starter motor by power accumulated in a secondary battery includes a dynamic internal resistance measuring unit that measures an internal resistance of the secondary battery while the engine is being started up by the starter motor, a static internal resistance measuring unit that measures an internal resistance of the secondary battery when the engine is stopped, and a determining unit that determines an engine start-up possibility by the secondary battery, based on a value obtained by a product of a ratio between a first static internal resistance before or after the past engine start-up and a second static internal resistance within a predetermined time since a current time point and the dynamic internal resistance measured by the dynamic internal resistance measuring unit at the time of the engine start-up in the past. 1. A start-up possibility determining apparatus that determines whether an engine can be started up by driving a starter motor by electric power accumulated in a secondary battery , comprising:a dynamic internal resistance measuring unit that measures a dynamic internal resistance which is an internal resistance of the secondary battery while the engine is being started up by the starter motor;a static internal resistance measuring unit that measures a static internal resistance which is an internal resistance of the secondary battery when the engine is stopped; anda determining unit that determines possibility of a start-up of the engine by the secondary battery, based on a value obtained by a product of a ratio between a first static internal resistance which was measured by the static internal resistance measuring unit before or after a time of an engine start-up in the past and a second static internal resistance which was measured by the static internal resistance measuring unit within a predetermined time since a current point of time and ...

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19-12-2013 дата публикации

Control apparatus for internal combustion engine

Номер: US20130333662A1
Автор: Yoshihiro Okada
Принадлежит: Toyota Motor Corp

Provided is a control apparatus for an internal combustion engine, which can favorably suppress an occurrence of abnormal combustion regardless of its operational conditions. An occurrence probability of abnormal combustion of the internal combustion engine ( 10 ) is obtained on the basis of a fuel dilution index. An expected value I of the number of occurrences of abnormal combustion per a predetermined time period is calculated on the basis of the occurrence probability of abnormal combustion. The upper limit value of a torque generated by the internal combustion engine ( 10 ) is limited low so that the expected value I does not exceed a predetermined tolerable value.

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19-12-2013 дата публикации

Control apparatus for internal combustion engine, method of controlling internal combustion engine, and computer-readable storage medium

Номер: US20130338906A1
Принадлежит: Honda Motor Co Ltd

A control apparatus for an internal combustion engine includes a cylinder internal pressure sensor, a fuel injection parameter calculator, a driving device, and a sensor output signal processing device. The sensor output signal processing device is configured to set a noise reduction period in accordance with an opening time and an opening start time of a fuel injection valve and is configured to reduce, during the noise reduction period, noise that is included in a cylinder internal pressure sensor output signal and that is caused by opening of the fuel injection valve.

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02-01-2014 дата публикации

Method and system for pre-ignition control

Номер: US20140000552A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for reducing late burn induced cylinder pre-ignition events. Forced entry of residuals from a late burning cylinder into a neighboring cylinder may be detected based on engine block vibrations sensed in a window during an open exhaust valve of the late burning cylinder. In response to the entry of residuals, a pre-ignition mitigating action, such as fuel enrichment or deactivation, is performed in the neighboring cylinder.

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02-01-2014 дата публикации

Method and system for pre-ignition control

Номер: US20140000557A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods and systems are provided for reducing late burn induced cylinder pre-ignition events. Forced entry of residuals from a late burning cylinder into a neighboring cylinder may be detected based on engine block vibrations sensed in a window during an open exhaust valve of the late burning cylinder. In response to the entry of residuals, a pre-ignition mitigating action, such as fuel enrichment or deactivation, is performed in the neighboring cylinder.

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09-01-2014 дата публикации

Method for controlling engine noise including combustion noise of internal combustion engine

Номер: US20140012487A1
Автор: InSoo Jung
Принадлежит: Hyundai Motor Co

A method for controlling noise including combustion noise of an internal combustion engine includes (a) setting an engine noise target value and a cylinder pressure level target value, (b) determining a first comparison value by subtracting a measured cylinder pressure level from the cylinder pressure level, (c) receiving an engine noise parameter stored in an ECU, (d) determining the engine noise using the engine noise measured at step (c), (e) determining a direct correlation coefficient, an indirect correlation coefficient, mechanical noise, and flow noise through a proportional integral controller, (f) performing correction, (g) controlling the engine based on the value decided at step (f), (h) measuring a combustion pressure after step (g), (i) converting the combustion pressure into a cylinder pressure level within a predetermined crank angle after step (g), and (j) determining direct combustion noise of the engine noise after step (h).

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06-02-2014 дата публикации

Fuel rail assembly including fuel separation membrane

Номер: US20140034021A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

As one example, a fuel rail assembly for supplying pressurized fuel to a plurality of cylinders of an engine is provided. The fuel rail assembly includes a fuel rail housing defining an internal fuel rail volume having at least a first region and a second region; a fuel separation membrane element disposed within the fuel rail housing that segregates the first region from the second region. The membrane element can be configured to pass a first component of a fuel mixture such as an alcohol through the membrane element from the first region to the second region at a higher rate than a second component of the fuel mixture such as a hydrocarbon. The separated alcohol and hydrocarbon components can be provided to the engine in varying relative amounts based on operating conditions.

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13-02-2014 дата публикации

Knock control apparatus for an internal combustion engine

Номер: US20140041439A1
Автор: Yuhei Matsushima
Принадлежит: Mitsubishi Electric Corp

A knock control apparatus for an internal combustion engine can remove regularly generated noise vibration in a simple and appropriate manner. The apparatus includes a knock sensor, a crank angle sensor, a vibration waveform detection unit that detects a vibration waveform of a knock natural frequency component, a vibration waveform average value calculation unit that calculates a vibration waveform average value corresponding to a noise vibration waveform by filtering the vibration waveform over a plurality of ignition cycles, a noise vibration waveform removal unit that removes the noise vibration waveform by subtracting the vibration waveform average value from the vibration waveform, a knock determination threshold value calculation unit that calculates a threshold value based on a peak value of the vibration waveform after removal of the noise vibration waveform, and a knock determination unit that determines whether a knock has occurred, by comparing the peak value with the threshold value.

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20-02-2014 дата публикации

In-cylinder pressure detecting device of direct injection type internal combustion engine

Номер: US20140048041A1
Принадлежит: Honda Motor Co Ltd, Keihin Corp

An in-cylinder pressure detecting device of a direct injection type internal combustion engine is provided in which a ring-shaped pressure detection element ( 34 ) surrounding a fuel injection hole ( 33 b ) is provided in the vicinity of an extremity of an injector ( 20 ) that injects fuel into a combustion chamber. Since the pressure detection element is provided on the injector, not only is it unnecessary to change the shape or structure of the cylinder head or the combustion chamber in order to provide the pressure detection element, but it is also possible to cool the pressure detection element ( 34 ) by fuel passing through the inside of the injector to thus enhance the precision of pressure detection and the durability. Further, since the ring-shaped pressure detection element ( 34 ) surrounds the periphery of the fuel injection hole ( 33 b ), it is possible to maximize the dimensions of the pressure detection element ( 34 ) to thus further enhance the precision of pressure detection while avoiding interference between the pressure detection element ( 34 ) and fuel injected via the fuel injection hole ( 33 b ).

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20-02-2014 дата публикации

Method and device for controlling pilot injection timing when abnormality occurs in combustion diagnosis signal relating to engine

Номер: US20140048046A1
Автор: Yasuhiro Saeki
Принадлежит: Mitsubishi Heavy Industries Ltd

The present invention includes: an injection timing correction unit 62 which repeatedly corrects a fuel injection timing in relation to a cylinder in which combustion is determined by a combustion diagnosis device 44 to be less than optimal such that a correction amount accumulates until combustion is determined to be optimal; an allowable correction range setting unit 64 which sets an allowable correction range of the fuel injection timing on the basis of data indicating past fuel injection timings of a plurality of cylinders; an injection timing determination unit 70 which determines whether or not the fuel injection timing corrected by the injection timing correction unit 62 is within the allowable correction range; and a command control unit 72 which outputs an injection command at the corrected fuel injection timing when the determination unit determines that the corrected fuel injection timing is within the allowable correction range.

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27-03-2014 дата публикации

CONTROL APPARATUS FOR INTERNAL COMBUSTION ENGINE

Номер: US20140088852A1
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

Provided is a control apparatus for an internal combustion engine which can favorably achieve a good balance between the prevention of an excessive increase in the piston temperature and the prevention of deterioration of various performances of the internal combustion engine as a result of execution of abnormal combustion suppression control, even when abnormal combustion occurs continuously or substantially continuously over a plurality of cycles. An in-cylinder pressure sensor () is provided to obtain the in-cylinder pressure P of an internal combustion engine (). When continuous pre-ignition is detected using the in-cylinder pressure sensor (), the control apparatus makes it more difficult for continuous pre-ignition suppression control to be executed when the Pmax at the time of pre-ignition is low than when the Pmax at the time of pre-ignition is high. 1. A control apparatus for an internal combustion engine , comprising:a controller that is programmed to:obtain in-cylinder pressure of an internal combustion engine;detect presence or absence of abnormal combustion on a basis of the in-cylinder pressure obtained by the controller; andwhen continuous or substantially continuous abnormal combustion is detected, increase an abnormal combustion allowable number that is allowed until abnormal combustion suppression control which suppresses abnormal combustion is executed when a maximum in-cylinder pressure value at a time of occurrence of abnormal combustion is low, as compared with when the maximum in-cylinder pressure value at the time of occurrence of abnormal combustion is high.2. The control apparatus for an internal combustion engine according to claim 1 ,wherein the controller estimates a piston temperature increase amount due to occurrence of abnormal combustion, on a basis of a product of a piston temperature increase rate that is set so as to increase with a increase in the maximum in-cylinder pressure value at the time of occurrence of abnormal combustion ...

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02-01-2020 дата публикации

Low Throttle Rate Command Compensation Via Full Authority Engine Trim

Номер: US20200002018A1
Принадлежит:

An example method includes: determining a throttle command for a servomotor configured to control a position of a throttle lever, where the position of the throttle lever indicates a commanded thrust for the first engine of the aircraft; determining a trim command for the first engine to equalize the thrust of the first engine with the respective thrust of the second engine; determining that a magnitude of the throttle command is less than a magnitude of a threshold throttle command indicative of a dead zone of the servomotor, where the servomotor is irresponsive to a given throttle command within the dead zone; modifying the trim command based on the throttle command to generate a modified trim command that compensates for irresponsiveness of the servomotor to the throttle command; and changing the thrust generated by the first engine based on the modified trim command. 1. A method comprising:determining, by a thrust management computer of an aircraft having at least a first engine and a second engine, a throttle command for a servomotor configured to control a position of a throttle lever, wherein the position of the throttle lever indicates a commanded thrust for the first engine of the aircraft;determining, by the thrust management computer based on detecting a difference between a thrust generated by the first engine and a respective thrust generated by the second engine, a trim command for the first engine to equalize the thrust of the first engine with the respective thrust of the second engine;determining, by the thrust management computer, that a magnitude of the throttle command is less than a magnitude of a threshold throttle command indicative of a dead zone of the servomotor, wherein the servomotor is irresponsive to a given throttle command within the dead zone;modifying, by the thrust management computer, the trim command based on the throttle command to generate a modified trim command that compensates for irresponsiveness of the servomotor to the ...

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05-01-2017 дата публикации

SYSTEM AND METHOD FOR OXIDANT TEMPERATURE CONTROL

Номер: US20170002722A1
Принадлежит:

A system includes a compressed air system configured to couple to an engine. The compressed air system includes a compression device configured to compress an air flow, a heat exchanger configured to exchange heat with the air flow along a first flow path, and a bypass system configured to flow the air along a second flow path that bypasses the heat exchanger. The compressed air system is configured to selectively flow the airflow along the first flow path, the second flow path, or a combination thereof, to the engine. 1. A system comprising: a compression device configured to compress an air flow;', 'a heat exchanger configured to exchange heat with the air flow along a first flow path; and', 'a bypass system configured to flow the air along a second flow path that bypasses the heat exchanger, wherein the compressed air system is configured to selectively flow the airflow along the first flow path, the second flow path, or a combination thereof, to the engine., 'a compressed air system configured to couple to an engine, the compressed air system comprising2. The system of claim 1 , wherein the compressed air system may include exhaust gas recirculation (EGR) gases.3. The system of claim 1 , wherein the heat exchanger is coupled to a first coolant circuit claim 1 , wherein the heat exchanger is configured to transfer heat from a portion of the compressed air flow to a first coolant flow through the first coolant circuit.4. The system of claim 3 , wherein the heat exchanger comprises a high pressure stage and a low pressure stage claim 3 , wherein the high pressure stage is coupled to the first coolant circuit claim 3 , the low pressure stage is coupled to a second coolant circuit claim 3 , and the low pressure stage is configured to transfer heat from the portion of the compressed air flow to a second coolant flow through the second coolant circuit.5. The system of claim 4 , comprising an engine cooling system claim 4 , wherein the engine cooling system comprises:a ...

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05-01-2017 дата публикации

Engine control device and engine control method

Номер: US20170002753A1
Автор: Tsutomu Miyazaki
Принадлежит: Toyota Motor Corp

Determination criteria for an excessive torque state are changed based on a predetermined vehicle speed related parameter. The determination criteria are changed such that when the vehicle speed related parameter is a value corresponding to a relatively high vehicle speed state, the excessive torque state is difficult to determine compared to when the vehicle speed related parameter is a value corresponding to a relatively low vehicle speed state.

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05-01-2017 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20170002760A1
Автор: Hayashita Go, Ide Koji
Принадлежит:

A control device for an internal combustion engine comprises an air-fuel ratio control part configured to control the air-fuel ratio of the exhaust gas and a heating control part configured to control the heating of the air-fuel ratio sensors. The heating control part controls the sensor heaters so that the temperature of the upstream air-fuel ratio sensor becomes less than the activation temperature and so that the temperature of the downstream air-fuel ratio sensor becomes the activation temperature or more while the internal combustion engine is stopped by the automatic stop function. The air-fuel ratio control part controls the exhaust air-fuel ratio based on the outputs of the two air-fuel ratio sensors during engine operation and control the air-fuel ratio temporarily based on only the output of the downstream air-fuel ratio sensor after the internal combustion engine has been restarted after automatic stop. 1. A control device for an internal combustion engine which has an automatic stop function , the internal combustion engine equipped with:an exhaust purification catalyst provided in an exhaust passage;an upstream air-fuel ratio sensor provided in the exhaust passage at an upstream side of the exhaust purification catalyst in a direction of flow of exhaust;a downstream air-fuel ratio sensor provided in the exhaust passage at a downstream side of the exhaust purification catalyst in the direction of flow of exhaust;an upstream side sensor heater heating the upstream air-fuel ratio sensor; anda downstream side sensor heater heating the downstream air-fuel ratio sensor, the control device comprising:an electronic control unit operatively connected to the internal combustion engine, the upstream air-fuel ratio sensor, the downstream air-fuel ratio sensor, the upstream side sensor heater, and the downstream side sensor heater, the electronic control unit configured to:control an air-fuel ratio of exhaust gas flowing into the exhaust purification catalyst; ...

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05-01-2017 дата публикации

SYSTEMS AND METHODS FOR ON-BOARD CYLINDER LEAKDOWN TESTING

Номер: US20170002761A1
Автор: Dudar Aed M.
Принадлежит:

Methods and systems are provided for performing an onboard cylinder leakdown test in response to an indication of cylinder misfire. In one example, following an engine-off event and an engine temperature above a threshold, fuel is injected into the indicated cylinder under conditions wherein the cylinder is expected to be sealed, and the detection of hydrocarbon migration out of the cylinder indicates cylinder degradation. In this way, cylinder degradation may be accurately diagnosed without intrusive, time consuming, and difficult off-board cylinder leakdown tests. 1. A method for an engine , comprising:during a first condition, including an engine-off condition, injecting a quantity of fuel into a first cylinder of the engine while maintaining an intake valve and an exhaust valve of the first cylinder closed; andindicating degradation of the first cylinder responsive to hydrocarbon migration out of the cylinder.2. The method of claim 1 , further comprising:prior to injecting fuel into the first cylinder, positioning the first cylinder at a top dead center conformation.3. The method of claim 2 , wherein indicating degradation of the first cylinder responsive to hydrocarbon migration out of the first cylinder comprises indicating degradation of the exhaust valve based on hydrocarbon migration out of the first cylinder and into an engine exhaust.4. The method of claim 3 , further comprising:indicating degradation of the exhaust valve responsive to an output of an exhaust oxygen sensor indicating a decrease in exhaust air-fuel ratio.5. The method of claim 2 , wherein indicating degradation of the first cylinder responsive to hydrocarbon migration out of the first cylinder comprises indicating degradation of the first cylinder based on hydrocarbon migration out of the first cylinder and into a fuel vapor canister.6. The method of claim 5 , further comprising:indicating degradation of the first cylinder responsive to an increase in fuel vapor canister temperature above ...

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07-01-2016 дата публикации

ABNORMAL COMBUSTION DETECTION APPARATUS FOR INTERNAL COMBUSTION ENGINE

Номер: US20160003173A1
Принадлежит:

An object of the present invention is to provide a technology that enables an abnormal combustion detection apparatus for a spark ignition internal combustion engine having a plurality of cylinders to detect abnormal combustion such as pre-ignition and knocking with improved accuracy. To achieve the object, according to the present invention, in an abnormal combustion detection apparatus for a spark-ignition internal combustion engine that determines or detects the occurrence of abnormal combustion by comparing a vibration intensity obtained from a measurement signal of a knock sensor and a determination threshold, when the occurrence of abnormal combustion is detected, the apparatus corrects a determination threshold for the next cylinder using as parameters the peak value of the vibration intensity at the time of the occurrence of abnormal combustion and the engine speed. 1. An abnormal combustion detection apparatus for a spark-ignition internal combustion engine having a plurality of cylinders , comprising:measurement unit for measuring the vibration intensity of the internal combustion engine;determination unit for performing determination processing, which determines that abnormal combustion occurs, if the vibration intensity measured by said measuring unit in a determination period set for each cylinder is higher than a determination threshold; andcorrection unit for correcting a determination threshold to be used in determination processing for a next cylinder on the basis of a peak value of the vibration intensity measured by said measurement unit at the time when the abnormal combustion occurs and an engine speed, when it is determined by said determination unit that the abnormal combustion occurs.2. An abnormal combustion detection apparatus according to claim 1 , wherein claim 1 , said correction unit calculates the intensity of vibration lingering in the determination period for the next cylinder using as parameters said peak value and said engine speed ...

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02-01-2020 дата публикации

INTERNALLY COOLED HIGH COMPRESSION LEAN-BURNING INTERNAL COMBUSTION ENGINE

Номер: US20200003112A1
Автор: Mulye Nirmal
Принадлежит: NOSTRUM ENERGY PTE, LTD.

An internally cooled internal combustion piston engine and method of operating a piston engine is provided, with the combination of liquid water injection, higher compression ratios than conventional engines, and leaner air fuel mixtures than conventional engines. The effective compression ratio of the engines herein is greater than 13:1. The engines may employ gasoline or natural gas and use spark ignition, or the engines may employ a diesel-type fuel and use compression ignition. The liquid water injection provides internal cooling, reducing or eliminating the heat rejection to the radiator, reduces engine knock, and reduces NOx emissions. The method of engine operation using internal cooling with liquid water injection, high compression ratio and lean air fuel mixture allow for more complete and efficient combustion and therefore better thermal efficiency as compared to conventional engines. 125-. (canceled) This application is a continuation application of co-pending U.S. patent application Ser. No. 14/949,523 filed Nov. 23, 2015, which is a continuation application of U.S. patent application Ser. No. 14/598,935 filed Jan. 16, 2015, now U.S. Pat. No. 9,194,339 issued Nov. 24, 2015, which is a continuation application of U.S. patent application Ser. No. 13/444,533 filed Apr. 11, 2012, now U.S. Pat. No. 8,935,996 issued Jan. 20, 2015, which has been filed as U.S. Reissue patent application Ser. No. 15/410,356 filed Jan. 19, 2017, which application claims priority under 35 U.S.C. § 119(e) of U.S. Provisional Patent Application No. 61/474,240, filed Apr. 11, 2011, the disclosure of which is hereby incorporated by reference in its entirety.The present disclosure pertains to the field of internal combustion engines, including engines for motor vehicles, railways, ships, aircraft, or electrical power generation.This disclosure pertains to internal combustion engines that operate far more efficiently than conventional engines. The principles set forth herein can be used ...

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02-01-2020 дата публикации

CONTROL SYSTEM FOR INTERNAL COMBUSTION ENGINE

Номер: US20200003135A1
Принадлежит:

The center injection engine is an engine equipped with the direct injector and an ignition apparatus at center of a ceiling part of the combustion chamber. The positive tumble flow flows from the intake port side to the exhaust port side on the ceiling part side of the combustion chamber, and also flows from the exhaust port side to the intake port side on the piston top part side. The ECU calculates the injection timing of the direct injector based on the engine load. In the first injection control, the higher the engine load becomes, the more the end crank angle is retarded. 1. A control system for internal combustion engine comprising:a combustion chamber of an internal combustion engine in which positive tumble flow is generated;an ignition apparatus which is provided substantially at center of a ceiling part of the combustion chamber;a direct injector which is provided adjacent to the ignition apparatus; anda control unit which is configured to control injection timing of the direct injector based on load of the engine,wherein the control unit is further configured to:control the injection timing to a crank angle section corresponding to intake stroke of the engine in a low-load region of the engine; andcontrol at least end crank angle of the injection timing in a high-load region of the engine on a retard side as compared to that of the injection timing in the low-load region,wherein the end crank angle of the injection timing in the high-load region is within a crank angle section corresponding to a first half of compression stroke of the engine.2. The control system according to claim 1 , further comprising:a fuel tubing which is configured to provide the direct injector with fuel in compressed state,wherein the control unit is further configured to control fuel pressure in the fuel tubing based on the engine load when the engine load is in the high-load region,wherein the fuel pressure decreases as the engine load increases.3. The control system according ...

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02-01-2020 дата публикации

METHOD FOR MANAGING PINKING IN A CONTROLLED-IGNITION INTERNAL COMBUSTION ENGINE

Номер: US20200003136A1
Принадлежит:

A method for managing knock in a cylinder of an internal combustion engine, in a system including at least one acoustic sensor and a processor, in order to take into account acoustic pollution resulting from a noise, the method including: forming and digitizing the signals of the acoustic sensor, applying a bandpass filter to obtain a filtered noise, determining an adjustable gain-correction function using a gain-correction curve and, depending on the angular position of the end of injection, the point on the gain-correction curve to be used to convert the filtered noise into a corrected knock score, comparing a corrected knock score thus obtained to a knock decision threshold, to correct the timing advance, the gain-correction curve being defined by a calibration value and four angular points obtained by calculation based on the start and end positions of a knock-observation window and on a known characteristic of the noise. 1. A method for managing knock in a cylinder of an internal combustion engine , the method being implemented in a system comprising at least one acoustic sensor and a processor , the method being intended to take into account acoustic pollution resulting from a known repeatable parasitic noise of variable temporal position , the method comprising:forming and digitizing signals delivered by the acoustic sensor,applying a bandpass filter in order to preserve only a frequency range of interest for knock, in a filtered noise,determining an adjustable gain-correction function using a gain-correction curve, intended to decrease the influence of the parasitic noise,determining, depending on an angular position of an end of injection, a point on the gain-correction curve to be used to convert the filtered noise into a corrected knock score,comparing corrected knock score thus obtained to a knock decision threshold,deducing therefrom an ignition timing advance correction value to be applied in the next cycle,{'b': 1', '2', '1, 'wherein the gain- ...

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02-01-2020 дата публикации

INTERNAL COMBUSTION ENGINE AND CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20200003145A1
Автор: SUGANO Tsubasa
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A combustion control part of a control device for an internal combustion engine configured to calculate a first vibration level of an engine body at a first judgment frequency band of a second overtone of a specific frequency band based on vibration acceleration detected by a vibration sensor and, when the first vibration level is less than a predetermined first reference vibration level set in advance according to the engine operating state, to correct one or both of a target injection amount and target injection timing so that the first vibration level becomes the first reference vibration level or more. 1. A control device for an internal combustion engine , an engine body;', 'a fuel injector injecting fuel for combustion inside a combustion chamber of the engine body; and', 'a vibration sensor detecting vibration acceleration of the engine body, wherein, 'the internal combustion engine comprising;'}the control device comprises a combustion control part configured to control an injection amount and injection timing of fuel injected from the fuel injector to a target injection amount and target injection timing set based on an engine operating state to cause the fuel to burn by self ignition so as to cause generation of heat in the combustion chamber two times in stages so a pressure waveform showing a change along with time of a rate of rise of cylinder pressure becomes a two-peak shape and so that a peak interval from a first peak value of a first peak of the pressure waveform formed by the first heat generation to a second peak value of a second peak of the pressure waveform formed by the second heat generation becomes a reference peak interval suppressing vibration acceleration of a specific frequency band in vibration acceleration of the engine body, and calculate a first vibration level of the engine body in a first judgment frequency band of a second overtone of the specific frequency based on vibration acceleration detected by the vibration sensor; and,', ...

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07-01-2021 дата публикации

A METHOD FOR ESTIMATING CYLINDER PRESSURE

Номер: US20210003082A1
Принадлежит: VOLVO TRUCK CORPORATION

The invention relates to a method () for estimating a cylinder pressure (CP) in an internal combustion engine arrangement (), the method comprising the steps of: initiating () an opening of a valve by an actuator during an expansion stroke; monitoring () the valve to determine a point in time (Tp) when the valve opens; determining () a differential pressure (DP) between the combustion cylinder and a position in a fluid medium exhaust passage () downstream said valve at the point in time (Tp); receiving () data being indicative of a pressure (EP) in the fluid medium passage at the point in time (Tp); and determining () the cylinder pressure (CP) at the point in time (Tp) based on the determined differential pressure (DP) and the data indicative of the pressure in said fluid medium passage. 1. A method for estimating a cylinder pressure (CP) in an internal combustion engine arrangement , said internal combustion engine arrangement comprising an internal combustion engine having a combustion cylinder and a reciprocating piston movable within said combustion cylinder between a bottom dead center (BDC) and a top dead center (TDC) , and further a flow control valve assembly adapted to regulate the flow of a fluid medium passing through the flow control valve in fluid communication with the combustion cylinder and comprising a valve operable between an open position and a closed position and an actuator operable to provide an opening force for opening the valve ,characterized by the method comprising the steps of:initiating an opening of said valve by said actuator during an expansion stroke;monitoring said valve to determine a point in time (Tp) when said valve opens;determining a differential pressure (DP) between a gas pressure level of the fluid medium in said combustion cylinder and a pressure level of the combustion gas in a fluid medium passage downstream said valve at said point in time (Tp);receiving data being indicative of a pressure (EP) in said fluid medium ...

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07-01-2021 дата публикации

OPTIMIZED FUEL MANAGEMENT SYSTEM FOR DIRECT INJECTION ETHANOL ENHANCEMENT OF GASOLINE ENGINES

Номер: US20210003084A1
Принадлежит:

Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline. 121-. (canceled)22. A fuel management system for a spark ignition engine , comprising:a first fueling system that uses direct injection;a second fueling system that uses port fuel injection; anda three-way catalyst configured to reduce emissions from the spark ignition engine,wherein the fuel management system is configured to provide fueling in a first torque range, the first torque range being a first range of torque values at which both the first fueling system and the second fueling system are operable throughout the first range of torque values,wherein the fuel management system is further configured such that a fraction of fueling provided by the first fueling system is higher at a highest value of torque in the first torque range than in a lowest value of torque in the first torque range,wherein the fuel management system is further configured to provide fueling in a second torque range, the second torque range being a second range of torque values at which the second fueling system is operable throughout the second range of torque values and the first fueling system is not operable throughout the second range of torque values,wherein the fuel management system is further configured such that when the system provides fueling at a torque value that exceeds the second range of torque values, the spark ignition engine is operated in the first torque range,wherein the fuel management system is further configured to increase the fraction of fueling provided ...

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07-01-2021 дата публикации

Adaptive any-fuel camless reciprocating engine

Номер: US20210003087A1
Принадлежит: UNIVERSITY OF CALIFORNIA

An adaptive, any-fuel reciprocating engine using sensor feedback integration of high-speed optical sensors with real-time control loops to adaptively manage the electronic actuation schemes over a range of engine loads and fuels. The engine uses one or more optical sensors to collect specific types of gas property data via a spectroscopic technique to adaptively control various components within the engine.

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02-01-2020 дата публикации

FLOW RATE MEASURING DEVICE

Номер: US20200003595A1
Принадлежит: Mitsubishi Electric Corporation

Provided is a flow rate measuring device including a connector portion, a main body portion, an internal flow passage, and a flow rate detection element. The internal flow passage includes a main flow passage and a sub-flow passage. The sub-flow passage includes a flow rate detection element-side flow passage and connection flow passages. The main flow passage includes an introduction portion, a small flow passage sectional area portion, and an exit portion. The connection flow passages include an upstream-side connection flow passage and a downstream-side connection flow passage. The main flow passage and the flow rate detection element-side flow passage are formed so as to be symmetric with respect to a plane having a flow direction of the fluid to be measured flowing through the pipe as a normal. The main flow passage has a portion at the plane of symmetry as the small flow passage sectional area portion. 1. A flow rate measuring device , comprising:a connector portion, which is arranged outside a pipe flowing a fluid to be measured, and is configured to transmit and receive a signal to and from an exterior;a main body portion extended from the connector portion so as to be located in the pipe;an internal flow passage, which is formed inside the main body portion, and is configured to cause part of the fluid to be measured flowing through the pipe to flow therethrough; anda flow rate detection element, which is installed in the internal flow passage, and is configured to detect a flow rate of the fluid to be measured, a main flow passage configured to extend from an inflow port configured to introduce the part of the fluid to be measured flowing through the pipe to an outflow port configured to return the introduced part of the fluid to be measured to the pipe; and', 'a sub-flow passage branching from the main flow passage to bypass the main flow passage,, 'wherein the internal flow passage includes a flow detection element-side flow passage in which the flow ...

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01-01-2015 дата публикации

MOTOR VEHICLE AND METHOD OF CONTROL OF A MOTOR VEHICLE

Номер: US20150006064A1
Принадлежит:

In one aspect of the invention there is provided a motor vehicle comprising an engine, the vehicle being operable automatically to stop the engine responsive to a determination that the engine is not required to provide torque to drive the vehicle, wherein the vehicle comprises control means operable to monitor a value of one or more parameters associated with the vehicle during a drive cycle, the control means being arranged automatically to determine whether a current driving style of a driver corresponds to an economy-oriented driving style or a performance-oriented driving style responsive to the value of the one or more parameters over time during the drive cycle, the control means being operable to over-ride stopping of the engine when it is determined that the driving style of the driver corresponds to a performance-oriented style. 130-. (canceled)31. A controller for a motor vehicle having an engine and an engine control system operable automatically to stop the engine in dependence on a determination that the engine is not required to provide torque to drive the vehicle , wherein the controller is configured to:monitor one or more parameters associated with the vehicle during a drive cycle;determine whether a current driving style of a driver corresponds to a first driving style or a second driving style in dependence on the value of the one or more parameters over time during the drive cycle; andto over-ride stopping of the engine by the engine control system when it is determined that the driving style of the driver corresponds to the second driving style.32. A controller as claimed in configured to calculate a value of a driver behavior index in dependence on the driving style of the driver and to over-ride stopping of the engine responsive to the value of driver behavior index.33. A controller as claimed in configured to change the value of the driver behavior index toward a first value when the driver displays the first driving style and to change the ...

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12-01-2017 дата публикации

Engine Control Device

Номер: US20170009621A1
Принадлежит: HITACHI AUTOMOTIVE SYSTEMS LTD

An engine control device sets a target value for the engine oil temperature appropriately in an engine that uses gasoline as a fuel, even when the fuel does not have a single boiling point because the gasoline is a mixed composition, or when the fuel property changes (for example, when the vaporization property changes due to deterioration). In other words, the engine control device prevents excessive heating or insufficient heating by changing the oil temperature to the high side in a condition wherein the fuel being used does not easily vaporize, and changing the oil temperature to the low side in a condition wherein the fuel being used easily vaporizes. This engine control device includes an oil temperature controller that controls the temperature of oil lubricating the interior of the engine; a fuel supply device that supplies fuel to the engine; and a detector for detecting the property of the fuel. The temperature of the oil is controlled on the basis of a signal from the detector.

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12-01-2017 дата публикации

CYLINDER PRESSURE BASED CONTROL OF DUAL FUEL ENGINES

Номер: US20170009671A1
Принадлежит:

Systems and methods for controlling operation of dual fuel internal combustion engines in response to cylinder pressure based determinations are disclosed. The techniques control fueling contributions from a first fuel source and a second fuel source to achieve desired operational outcomes in response to the cylinder pressure based determinations. 1. A method , comprising;operating an internal combustion engine system including an intake system connected to an engine with a plurality of cylinders and at least two fuel sources operably connected to the internal combustion engine system to provide a flow of liquid fuel to each of the plurality of cylinders and a flow of a gaseous fuel to each of the plurality of cylinders, wherein the intake system is coupled to each of the plurality of cylinders to provide a charge flow from the intake system to a combustion chamber of the respective cylinder, the internal combustion engine system further including an exhaust system;determining a pressure in the combustion chamber of at least one cylinder during a combustion cycle associated with the cylinder;determining at least one operating condition of the at least one cylinder that is based on the pressure; andadjusting a substitution rate of the gaseous fuel for the liquid fuel in response to the operating condition deviating from a target operating condition.2. (canceled)3. The method of claim 1 , wherein the pressure is an indicated mean effective pressure (IMEP) claim 1 , the operating condition is an energy output determined from the IMEP in response to combustion of the liquid fuel and gaseous fuel in the combustion chamber claim 1 , and a first part of the operating condition is an energy contribution of the liquid fuel to the energy output determined from an amount of the liquid fuel provided during the combustion cycle and a heating value of the liquid fuel and a second part of the operating condition is an energy contribution of the gaseous fuel to the energy output.4. ...

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12-01-2017 дата публикации

Control apparatus for internal combustion engine

Номер: US20170009672A1
Принадлежит: Toyota Motor Corp

A control apparatus for an internal combustion engine is configured to: calculate measured data of MFB in synchrony with crank angle based on in-cylinder pressure detected by an in-cylinder pressure sensor; execute engine control based on a measured value of a specified fraction combustion point that is calculated based on the measured data of MFB; calculate a first correlation index value for MFB and a second correlation index value for dMFB/dθ; and suspend the engine control when the first correlation index value is less than a first determination value and the second correlation index value is greater than or equal to a second determination value.

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12-01-2017 дата публикации

FUEL MIXTURE SYSTEM AND ASSEMBLY

Номер: US20170009681A1
Автор: Green Jason
Принадлежит:

A system and attendant structural assembly operative to establish a coordinated mixture of gaseous and distillate fuels for an engine including an electronic control unit (ECU) operative to monitor predetermined engine data determinative of engine fuel requirements and structured to regulate ratios of the gaseous and distillate fuel of an operative fuel mixture for the engine. The system and assembly includes at least one mixing assembly comprising an integrated throttle body and air gas mixer directly connected to one another, wherein the throttle body is disposed in fluid communication with a pressurized gaseous fuel supply and the air gas mixer is disposed in fluid communication with a flow of intake air to a combustion section of the engine. In use, the throttle body is structured to direct a variable gaseous fuel flow directly to the air gas mixer for dispensing into the intake air flow to the combustion section. 1. A control system for establishing gaseous fuel input for an engine operative on a variable mixture of gaseous and distillate fuels , said control system comprising:a monitor, said monitor comprising a plurality of sensors disposed and structured to monitor operating parameters over variable load conditions of the engine,said plurality of sensors further comprising at least one mass airflow (MAF) sensor, at least one temperature sensor, and at least one knock sensor,an electronic control unit (ECU) configured to interpretively process data from said monitor associated with said operating parameters, andsaid ECU operative to establish a concentration of the gaseous fuel in the variable fuel mixture to comply with any of said operating parameters being monitored.2. The control system as recited in wherein one of said operating parameters comprises a mass flow rate of intake air to a combustion section of the engine.3. The control system as recited in wherein one of said operating parameters comprises an exhaust gas temperature of the engine.4. The ...

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12-01-2017 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20170009682A1
Принадлежит: HONDA MOTOR CO., LTD.

A control device includes a cylinder pressure sensor, a driving condition detector, a reference crank angle setter, a reference cylinder pressure calculator, an EGR ratio estimator, and a controller. The cylinder pressure sensor detects a cylinder pressure inside a cylinder. The driving condition detector detects a driving condition in an internal combustion engine. The reference crank angle setter calculates, according to the driving condition, a reference crank angle immediately before which mixture gas starts combusting. The reference cylinder pressure calculator calculates a reference cylinder pressure at the reference crank angle based on temperature characteristics of a heat capacity ratio of the mixture gas under a condition. The EGR ratio estimator calculates an EGR ratio based on a pressure difference between the reference cylinder pressure and the cylinder pressure at the reference crank angle. The controller controls the internal combustion engine according to the EGR ratio. 1. A control device for an internal combustion engine including an EGR device that , concurrently with direct injection of a fuel into a cylinder , recirculates a portion of an exhaust gas discharged to an exhaust passage from the cylinder back to an intake passage as an external EGR gas , the control device comprising:an in-cylinder pressure sensor that detects a pressure inside the cylinder as an in-cylinder pressure;a driving condition detector that detects a driving condition of the internal combustion engine;a reference crank angle setter that obtains a crank angle immediately before start of combustion of a mixture gas charged in the cylinder depending on the detected driving condition of the internal combustion engine, and sets the obtained crank angle as a reference crank angle;a reference in-cylinder pressure calculator that calculates, as a reference in-cylinder pressure, a pressure inside the cylinder expected to occur at the set reference crank angle, based on a ...

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12-01-2017 дата публикации

A CONTROL DEVICE OF AN INTERNAL COMBUSTION ENGINE AND A CONTROL METHOD THEREOF

Номер: US20170009687A1
Принадлежит:

A control device of an internal combustion engine calculates an abnormal combustion prevention torque for preventing an abnormal combustion due to self-ignition whose heat source is a mixture of supplied fuel to the internal combustion engine and lubricant oil, on the basis of a cylinder wall temperature of the internal combustion engine or a temperature of a parameter in correlation with the cylinder wall temperature, and controls a torque of the internal combustion engine to prevent the torque of the internal combustion engine from becoming equal to or more than the abnormal combustion prevention torque. 1. A control device of an internal combustion engine , comprising:an abnormal combustion prevention torque calculation unit adapted to calculate an abnormal combustion prevention torque for preventing an abnormal combustion when a cylinder wall temperature of the internal combustion engine is at a low temperature due to self-ignition whose heat source is a mixture of supplied fuel to the internal combustion engine and lubricant oil, on the basis of the cylinder wall temperature or a temperature of a parameter in correlation with the cylinder wall temperature; anda torque control unit adapted to control a torque of the internal combustion engine to prevent the torque of the internal combustion engine from becoming equal to or more than the abnormal combustion prevention torque.2. The control device of an internal combustion engine according to claim 1 , whereinthe abnormal combustion prevention torque calculation unit makes the abnormal combustion prevention torque smaller as the cylinder wall temperature or the temperature of the parameter becomes lower.3. The control device of an internal combustion engine according to claim 2 , wherein calculates the abnormal combustion prevention torque on the basis of the cylinder wall temperature or the temperature of the parameter, and further an engine rotation speed of the internal combustion engine, and', 'makes the ...

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12-01-2017 дата публикации

CONTROL METHOD OF ELECTRONIC WASTE GATE ACTUATOR

Номер: US20170009692A1
Принадлежит:

A control method includes an electronic waste gate actuator (EWGA) and a waste gate valve, connected to each other through a rod. The control method includes an operation condition determination step for determining whether an engine is in cold operation or hot operation by measuring engine soak time and initial coolant temperature when the engine starts and by comparing them with a predetermined reference soak time and reference coolant temperature. The control method also includes a cold control step for setting cold operation reference voltage, performing cold operation learning, and applying cold operation learning data to the cold operation reference voltage, when the engine is in cold operation. The control method further includes a hot control step for setting hot operation reference voltage, performing hot operation learning, and applying hot operation learning data to the hot operation reference voltage, when the engine is in hot operation. 1. A method for controlling an electronic waste gate actuator (EWGA) in an electronic waste gate actuator system in which the electronic waste gate actuator is connected to a waste gate valve via a rod , the method comprising:an operation condition determination step for determining whether an engine is in cold operation or in hot operation by measuring an engine soak time and an initial temperature of coolant when the engine starts and by respectively comparing the engine soak time and the initial temperature of the coolant with a predetermined reference soak time and a predetermined reference coolant temperature;a cold control step for setting a cold operation reference voltage, for performing cold operation learning, and for applying cold operation learning data to the cold operation reference voltage, when it is determined at the operation condition determination step that the engine is in cold operation; anda hot control step for setting a hot operation reference voltage, for performing hot operation learning, and ...

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12-01-2017 дата публикации

METHOD FOR CALCULATING OXYZEN CONCENTRATION IN COMBUSTION CHAMBER

Номер: US20170009710A1
Автор: Han Seungcheol, LEE JangSu
Принадлежит: HYUNDAI MOTOR COMPANY

Provided is a method for calculating an oxygen concentration in a combustion chamber, including: calculating volume efficiency of the combustion chamber while a variable valve lift is in an on state and the volume efficiency of the combustion chamber and the volume of internal EGR from the volume of the combustion chamber while the variable valve lift is in an off state; and calculating a mass of the internal EGR from the pressure of an exhaust manifold, the temperature of the exhaust manifold, and the volume of the internal EGR. 1. A method for calculating an oxygen concentration in a combustion chamber , the method comprising:calculating a volume efficiency of the combustion chamber while a variable valve lift is in an on state and calculating the volume efficiency of the combustion chamber and a volume of an internal EGR from a volume of the combustion chamber while the variable valve lift is in an off state; andcalculating a mass of the internal EGR from a pressure of an exhaust manifold, a temperature of the exhaust manifold, and the volume of the internal EGR.2. The method of claim 1 , wherein:while the variable valve lift is in the on state, the volume efficiency of the combustion chamber is modeled from an engine speed, a pressure of an intake manifold, and a difference in pressure between the intake manifold and the exhaust manifold.3. The method of claim 1 , wherein:while the variable valve lift is in the off state, the volume efficiency of the combustion chamber is modeled from at least one of an engine speed, a fuel amount injected into the combustion chamber, and a pressure of an intake manifold.4. The method of claim 1 , wherein:the mass of the internal EGR is calculated from the volume of the internal EGR, the temperature of the exhaust manifold, and the pressure of the exhaust manifold.5. The method of claim 4 , wherein:the mass of the internal EGR is calculated from an equation of Pa*V/(R*Te),where, Pa represents the pressure of the exhaust manifold ...

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11-01-2018 дата публикации

METHODS AND SYSTEMS FOR AN OXYGEN SENSOR

Номер: US20180010530A1
Принадлежит:

Methods and systems are provided for reducing blackening of an oxygen sensor due to voltage excursions into an over-potential region. Before transitioning the sensor from a lower voltage to an upper voltage during variable voltage operation, an operating temperature of the sensor is reduced via adjustments to a sensor heater setting. The reduction in temperature increases the range of temperatures available to the sensor before the over-potential region is entered. 1. A method for an engine , comprising:during variable voltage operation of an oxygen sensor, reducing occurrence of blackening of an oxygen sensor element by decreasing an operating temperature of the oxygen sensor from a first temperature to a second temperature before transitioning from a lower operating voltage to a higher operating voltage.2. The method of claim 1 , wherein the second temperature is adjusted as a function of each of the first temperature claim 1 , and a difference between the higher operating voltage and a threshold voltage.3. The method of claim 2 , wherein the second temperature is decreased as the difference between the higher operating temperature and the threshold voltage increases claim 2 , and increased as the first temperature increases.4. The method of claim 3 , wherein the second temperature is further adjusted based on ambient temperature claim 3 , the second temperature raised towards the first temperature as the ambient temperature increases.5. The method of claim 4 , further comprising claim 4 , as the second temperature is raised claim 4 , decreasing a rate of ramping from the lower operating voltage to the higher operating voltage.6. The method of claim 1 , wherein the threshold voltage is a voltage where a rate of rise in pump cell voltage for a given change in pump cell current is higher than a threshold.7. The method of claim 1 , wherein decreasing the operating temperature includes decreasing the operating temperature of each of a pump cell and a Nernst cell of ...

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11-01-2018 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20180010567A1
Автор: HIROOKA Hisato
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A control device for an internal combustion engine is programmed, during a catalyst warm-up control, to perform first fuel injection by an injector in an intake stroke, control an ignition device so as to generate a discharge spark in a predetermined period in an expansion stroke, and perform second fuel injection, at a timing retarded from a compression top dead center, such that its injection period overlaps with at least a part of the predetermined period and an end timing of the injection period is advanced from an end timing of the predetermined period. Further, the control device is programmed, during the catalyst warm-up control, to control an actual tumble ratio depending on a result of determination using a first index value representing a speed of initial combustion accompanying an ignition by the ignition device and a second index value representing a speed of main combustion accompanying the ignition. 1. A control device for an internal combustion engine that includes:an ignition device arranged in a vicinity of a center of an upper part of a combustion chamber, and includes a spark plug for igniting an air-fuel mixture in a cylinder using a discharge spark;an injector arranged nearer to an intake valve than the spark plug in the vicinity of the center of the upper part of the combustion chamber, and includes one or more injection holes provided such that a contour surface of a fuel spray injected from the one or more injection holes toward the spark plug passes under an electrode portion of the spark plug;an in-cylinder pressure sensor configured to detect in-cylinder pressure; andan exhaust gas purification catalyst configured to purify exhaust gas from the combustion chamber,wherein a tumble flow that flows so as to go toward a side of an exhaust valve from a side of the intake valve in the upper part of the combustion chamber is generated in the combustion chamber of the internal combustion engine,wherein the control device comprises:a tumble flow ...

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14-01-2021 дата публикации

Takeoff power boost

Номер: US20210010436A1
Принадлежит: Bell Textron Inc

Embodiments are directed to boosting aircraft engine performance for takeoff and critical mission segments by reducing airflow used for cooling exhaust gases. The airflow is reduced by stopping an accessory blower or by closing an external air vent. Eliminating the cooling airflow to the exhaust has the effect of lowering the backpressure on the engine, which thereby increases maximum engine power.

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14-01-2021 дата публикации

CONTROL OF PISTON TRAJECTORY IN A FREE-PISTON COMBUSTION ENGINE

Номер: US20210010437A1
Принадлежит:

Various embodiments of the present disclosure are directed towards free-piston combustion engines. As described herein, a method and system are provided for displacing a free-piston assembly to achieve a desired engine performance by repeatedly determining position-force trajectories over the course of a propagation path and effecting the displacement of the free-piston assembly based, at least in part, on the position-force trajectory. In a dual-piston assembly free-piston engine, synchronization of the two piston assemblies is provided. 120-. (canceled)21. A method performed by a programmed computer system for controlling displacement of opposed free-piston assemblies , the method comprising:determining, using a control system, a first position-force trajectory for a first free-piston assembly of the opposed free-piston assemblies;determining, using the control system, a second position-force trajectory for a second free-piston assembly of the opposed free-piston assemblies;calculating a first synchronization force for the first free-piston assembly;calculating a second synchronization force for the second free-piston assembly; andeffecting displacement of the first free-piston assembly and the second free-piston assembly based on the first position-force trajectory, the second position-force trajectory, the first synchronization force, and the second synchronization force.22. The method of claim 21 , wherein the first free-piston assembly and the second free-piston assembly cycle between respective apices defining two strokes claim 21 , the method further comprising:producing net electrical energy output over both of the two strokes using a linear electromagnetic machine.23. The method of claim 21 , wherein effecting displacement of the first free-piston assembly and the second free-piston assembly comprises regulating a difference between a position of the first free-piston assembly and a position of the second free-piston assembly.24. The method of claim 21 , ...

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10-01-2019 дата публикации

Method for Obtaining Information for Adjusting an Adjustable Component of a Combustion Engine Drive System of a Gardening and/or Forestry Apparatus, Gardening and/or Forestry Apparatus System, and Gardening and/or Forestry Apparatus

Номер: US20190010880A1
Принадлежит:

A method obtains information for adjusting an adjustable component of a combustion engine drive system of a gardening and/or forestry apparatus. The method includes the steps of: providing a characteristic parameter using a mobile provision device, wherein the characteristic parameter describes a characteristic of an environment of the gardening and/or forestry apparatus; and obtaining the information for adjusting the adjustable component as a function of the provided characteristic parameter. 1. A method for obtaining information for adjusting an adjustable component of a combustion engine drive system of a gardening and/or forestry apparatus , the method comprising the steps of:a) providing a characteristic parameter using a mobile provision device, wherein the characteristic parameter describes a characteristic of an environment of the gardening and/or forestry apparatus; andb) obtaining the information for adjusting the adjustable component as a function of the provided characteristic parameter.2. The method according to claim 1 , further comprising the step of:outputting and/or transmitting the obtained information.3. The method according to claim 2 , wherein the information is output using optics claim 2 , acoustics and/or haptics.4. The method according to claim 1 , further comprising the step of:transmitting the provided characteristic parameter, wherein the step b) includes: obtaining the information for adjusting the adjustable component as a function of the transmitted characteristic parameter.5. The method according to claim 1 , further comprising the step of:adjusting the adjustable component based on the obtained information.6. The method according to claim 1 , wherein the step a) includes: receiving the characteristic parameter.7. The method according to claim 1 , wherein the mobile provision device includes a sensor claim 1 , and the step a) includes: identifying the characteristic using the sensor.8. The method according to claim 1 , wherein the ...

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15-01-2015 дата публикации

Dual-fuel diesel engine and operation method of the same

Номер: US20150013638A1
Принадлежит: Mitsubishi Heavy Industries Ltd

When shifting to the single combustion mode, an electromagnetic opening-and-closing valve V 1 is closed so as to block a gas fuel. Then, an electromagnetic opening-and-closing valve V 3 is opened so as to discharge the gas fuel remaining in a gas fuel supply path to the outside of the system. Then, an electromagnetic opening-and-closing valve V 2 is opened so as to introduce a replacement gas from a replacement gas reservoir tank to the gas fuel supply path, thereby replacing the contents inside the gas fuel supply path with the replacement gas. After completing the replacement, the electromagnetic opening-and-closing valves V 2 and V 3 are closed. Next, the electromagnetic opening-and-closing valve V 2 is opened and the replacement gas is injected from the gas fuel injectors to a combustion chamber.

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03-02-2022 дата публикации

OPTIMIZED FUEL MANAGEMENT SYSTEM FOR DIRECT INJECTION ETHANOL ENHANCEMENT OF GASOLINE ENGINES

Номер: US20220034272A1
Принадлежит:

Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline. 1. A fuel management system for spark ignition engine where the fuel management system controls fueling from a first fueling system that directly injects fuel into at least one cylinder as a liquid and increases knock suppression by evaporative cooling and from a second fueling system that injects fuel into a region outside of the cylinder;and where there is a range of torque where both fueling systems are used at the same value of manifold pressure;and where a fraction of fuel in the cylinder that is introduced by the first fueling system increases with increasing manifold pressure so as to prevent knock by providing increased knock resistance;and where the fuel management system controls the change in the fraction of fuel introduced by the first fueling system using closed loop control that utilizes a sensor that detects knock and where open loop control is also used;and where the open loop control uses an engine map lookup table;and where open loop control is used during transients.2. The fuel management system of where the maximum knock suppression that is employed is provided by a combination of fueling from the first and second fueling systems.3. The fuel management system of or where use of the second fueling system in addition to the first fueling system is employed to obtain combustion stability.4. The fuel management system of where fuel from the first fueling system is introduced when the engine torque is above a selected value.5. The fuel ...

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21-01-2016 дата публикации

SYSTEM AND METHOD FOR INIHIBITING ENGINE OPERATION DURING FUELING

Номер: US20160016468A1
Принадлежит:

A method according to an exemplary aspect of the present disclosure includes, among other things, inhibiting operation of an internal combustion engine of a vehicle based on a proximity of the vehicle to a fueling location. 1. A method , comprising:inhibiting operation of an internal combustion engine of a vehicle based on a proximity of the vehicle to a fueling location.2. The method as recited in claim 1 , further comprising:detecting whether the vehicle is at a fueling location, and inhibiting operation of the internal combustion engine when the vehicle is at the fueling location.3. The method as recited in claim 2 , wherein the detecting is based on information from at least one of (1) a global positioning system (GPS) claim 2 , (2) a wireless communication system claim 2 , or (3) a camera-based detection system.4. The method as recited in claim 1 , further comprising:detecting whether a fueling event is occurring, and inhibiting operation of the internal combustion engine when the fueling event is occurring.5. The method as recited in claim 4 , wherein detecting whether the fueling event is occurring further comprises at least one of (1) detecting a pressure within a fuel tank claim 4 , (2) detecting whether a door to a fuel tank is open claim 4 , or (3) detecting whether a fuel cap has been removed from the fuel tank.6. The method as recited in claim 4 , further comprising:detecting the power level of a battery of the vehicle during the fueling event; andturning off the vehicle if the power level falls below a lower threshold.7. The method as recited in claim 4 , further comprising:detecting the power level of a battery of the vehicle during the fueling event; andturning off an auxiliary component drawing power from the battery if the power level falls below a lower threshold.8. The method as recited in claim 4 , further comprising:detecting whether the vehicle is parked before the step of detecting whether a fueling event is occurring.9. The method as recited ...

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19-01-2017 дата публикации

Control Device for Internal Combustion Engine and Control Method for Cooling Device

Номер: US20170016380A1
Автор: TOYAMA Yuichi
Принадлежит:

The invention of the present application relates to a control device and a control method for a cooling device. A cooling device includes a first cooling water passage of a cylinder head, a second cooling water passage of a cylinder block, a control valve that changes a ratio between a flow rate of the first cooling water passage and a flow rate of the second cooling water passage, and a water pump. Then, the control device controls the control valve so that a ratio of the flow rate of the first cooling water passage increases when a cooling water circulation flow rate is insufficient due to failure of the water pump. Accordingly, it is possible to suppress damage of an engine body while suppressing deterioration in traveling performance of a vehicle when failure occurs in the water pump. 116.-. (canceled)17. A control device for an internal combustion engine configured to control a cooling device including a first cooling medium passage provided in a cylinder head of an internal combustion engine , a second cooling medium passage provided in a cylinder block of the internal combustion engine , a control valve that changes a ratio between a refrigerant flow rate of the first cooling medium passage and a refrigerant flow rate of the second cooling medium passage , and a pump that circulates the refrigerant , the control device comprising:a valve control unit that controls the control valve such that a ratio of the refrigerant flow rate of the first cooling medium passage becomes larger than that of a case where the pump is not in an abnormal state when the pump is in the abnormal state where an discharge flow rate of an operation state of causing the pump to eject a refrigerant is lower than an intended discharge flow rate by a predetermined value or more.18. The control device for an internal combustion engine according to claim 17 ,wherein the pump is an electric pump.19. The control device for an internal combustion engine according to claim 18 ,wherein the valve ...

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19-01-2017 дата публикации

SYSTEM AND METHOD FOR CONTROLLING VARIABLE TURBOCHARGER

Номер: US20170016391A1
Автор: KIM Young Min
Принадлежит:

A system for controlling a variable turbocharger includes: a first controller outputting a duty value for adjusting an opening degree of a vane of a turbocharger, and a second controller checking opening or closing operations of the vane when the first controller adjusts the opening degree of the vane. In particular, the second controller outputs a corrected duty value by correcting the output duty value, based on a correction map, in consideration of a back pressure according to whether the vane is opened or closed. 1. A system for controlling a variable turbocharger , comprising:a first controller configured to output a duty value adjusting an opening degree of a vane of a turbocharger; anda second controller configured to check whether the vane is in an opening or a closing operation when the first controller adjusts the opening degree of the vane, and in consideration of a back pressure according to whether the vane is opened or closed, the second controller outputs a corrected duty value by which the output duty value is corrected based on a correction map.2. The system according to claim 1 , wherein the first controller prestores an initial learning map which stores a position of the vane according to the duty value claim 1 , and checks whether the position of the vane according to the duty value corresponds to a position of the vane stored in the initial learning map while increasing and applying the duty value thereto.3. The system according to claim 2 , wherein claim 2 , when the position of the vane according to the increased and applied duty value does not correspond to the position of the vane stored in the initial learning map claim 2 , the duty value is corrected to have a high value by the first controller claim 2 , and the first controller stores a position of the vane according to the corrected increasing duty value in the initial learning map.4. The system according to claim 1 , wherein the second controller checks an operating condition of an ...

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19-01-2017 дата публикации

INTAKE MANIFOLD AND CYLINDER AIRFLOW ESTIMATION SYSTEMS AND METHODS

Номер: US20170016407A1
Принадлежит:

An engine control system includes a prediction module that, during an exhaust stroke of a first cylinder of an engine, determines a predicted intake manifold pressure at an end of a next intake stroke of a second cylinder following the first cylinder in a firing order of the cylinders. An air per cylinder (APC) module determines a predicted mass of air that will be trapped within the second cylinder at the end of the next intake stroke of the second cylinder based on the predicted intake manifold pressure. A fueling module controls fueling of the second cylinder during the next intake stroke based on the predicted mass of air. 1. An engine control system comprising:a prediction module that, during an exhaust stroke of a first cylinder of an engine, determines a predicted intake manifold pressure at an end of a next intake stroke of a second cylinder following the first cylinder in a firing order of the cylinders;an air per cylinder (APC) module that determines a predicted mass of air that will be trapped within the second cylinder at the end of the next intake stroke of the second cylinder based on the predicted intake manifold pressure; anda fueling module that controls fueling of the second cylinder during the next intake stroke based on the predicted mass of air.2. The engine control system of wherein the fueling module controls fueling of the second cylinder during the next intake stroke further based on a target air/fuel mixture.3. The engine control system of wherein the prediction module determines the predicted intake manifold pressure during the exhaust stroke of the first cylinder when a piston of the first cylinder of reaches a predetermined position during the exhaust stroke.4. The engine control system of wherein the prediction module determines the predicted intake manifold pressure based on differences between a mass air flowrate into an intake manifold and a mass air flowrate out of the intake manifold determined during a predetermined period before ...

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21-01-2016 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20160017821A1
Принадлежит: AISIN SEIKI KABUSHIKI KAISHA

The present invention is equipped with: a valve opening/closing timing control mechanism that sets the opening/closing timing of an exhaust valve; and a lock mechanism that holds the rotation phase of the valve opening/closing timing control mechanism in a first lock phase, in which the open state of the exhaust valve is maintained when the intake valve opens.

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21-01-2016 дата публикации

CONTROL APPARATUS FOR DIESEL ENGINE AND CONTROL METHOD FOR DIESEL ENGINE

Номер: US20160017836A1
Принадлежит: NGK SPARK PLUG CO., LTD.

A control apparatus () controls a diesel engine (). A glow plug () which can detect cylinder pressure is provided on the engine (). An ECU () computes a parameter related to a change in cylinder pressure obtained from the glow plug (). The ECU () controls fuel injection timing such that the parameter falls within a target range when combustion in the engine () is switched from premixed combustion to diffusion combustion.

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18-01-2018 дата публикации

Fuel management system for variable ethanol octane enhancement of gasoline engines

Номер: US20180016998A1
Принадлежит: Massachusetts Institute of Technology

Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency or the engine.

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18-01-2018 дата публикации

Knock detecting device

Номер: US20180017004A1
Принадлежит: HITACHI AUTOMOTIVE SYSTEMS LTD

Provided is a knock detecting device capable of ensuring knock detection accuracy irrespective of fuel injection conditions even when a period during which injection-valve noise occurs overlaps with a knock determination period. An ECU 9 subjects signals output from a knock sensor, which detects vibrations of an internal combustion engine, to frequency analysis to calculate frequency components ( 501 ). The ECU 9 calculates a background level that indicates the average of the frequency components ( 503 ). The ECU 9 stores, in association with each other, the number of fuel injections, which indicates the number of fuel injections in a predetermined time period during one combustion cycle, with a learning value, which indicates a frequency-component correction amount ( 507 ). The ECU 9 determines the presence or absence of a knock ( 504 ) on the basis of a knock index, which indicates the ratio of the difference between each frequency component and the learning value corresponding to the number of fuel injections, to the background level ( 503 ).

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18-01-2018 дата публикации

METHOD OF DETECTING ENGINE TUNING OF VEHICLE

Номер: US20180017006A1
Автор: KIM Pan Sang
Принадлежит: HYUNDAI MOTOR COMPANY

A method of detecting illegal tuning of the vehicle may include obtaining and storing, by a controller, at least one of learning information including a variable value and a control value and engine state information at a time of controlling the vehicle while the vehicle is driven, as a learning value; comparing, by the controller, a learning value, which is newly obtained over time, with a prestored previous learning value; determining, by the controller, that a tuning chip for changing component performance in the vehicle is mounted when the learning value is changed and there remains a difference between the obtained learning value and the prestored previous learning value at a predetermined level or higher for a predetermined period of time; and creating and storing, by the controller, a tuning detection code when it is determined that the tuning chip is mounted. 1. A method of detecting tuning of a vehicle , the method comprising:obtaining and storing, by a controller, at least one of learning information including a variable value and a control value and engine state information at a time of controlling the vehicle while the vehicle is driven, as a learning value;comparing, by the controller, a learning value, which is newly obtained over time, with a prestored previous learning value;determining, by the controller, that a tuning chip for changing component performance in the vehicle is mounted when the learning value is changed and there remains a difference between the obtained learning value and the prestored previous learning value at a predetermined level or higher for a predetermined period of time; andcreating and storing, by the controller, a tuning detection code when it is determined that the tuning chip is mounted.2. The method of claim 1 , wherein the variable value and the control value are a variable value and a control value at a time of controlling a turbocharger and an engine in a turbocharged vehicle claim 1 , and the tuning chip for changing ...

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18-01-2018 дата публикации

CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE

Номер: US20180017011A1
Автор: Kumagae Koji
Принадлежит:

A control device for an internal combustion engine is configured to feed fuel to a combustion chamber in an intake stroke to form a homogeneous premix and make the homogeneous premix burn by flame propagation when a temperature of an engine body is less than a first threshold value, to feed fuel to the combustion chamber in the intake stroke to form a homogeneous premix and make the homogeneous premix burn by compression ignition when the temperature of the engine body is the first threshold value to less than a second threshold value larger than the first threshold value, and to directly feed fuel to the combustion chamber in a compression stroke to form a partial premix and make the partial premix burn by compression ignition when the temperature of the engine body is the second threshold value or more. 1. A control device for an internal combustion engine for controlling an internal combustion engine provided with:an engine body;a fuel feed system configured to directly feed fuel to at least a combustion chamber of the engine body;a spark plug arranged so as to face the inside of the combustion chamber; anda temperature detector configured to detect a temperature of the engine body,which control device is comprised of a combustion control part configured to burn a premix by controlling the fuel feed system and the spark plug as necessary based on the temperature of the engine body in an operating region enabling the premix to be burned by compression ignition inside the combustion chamber,wherein the combustion control part is configured:to feed fuel to the combustion chamber in the intake stroke to form a homogeneous premix and make the homogeneous premix burn by flame propagation when the temperature of the engine body is less than a first threshold value;to feed fuel to the combustion chamber in the intake stroke to form a homogeneous premix and make the homogeneous premix burn by compression ignition when the temperature of the engine body is the first ...

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15-01-2015 дата публикации

Method of inferring start-up misfires due to the build-up of ice and melt water in the intake system of a vehicle engine

Номер: US20150019107A1
Принадлежит: FORD GLOBAL TECHNOLOGIES LLC

Methods are provided for determining ice formation during cruising under cold weather conditions at the intake manifold or throttle body of an engine system and for enabling engine misfire diagnostics upon detection of dissipation of the formed ice.

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15-01-2015 дата публикации

System and Method for Alerting and Suppression of Detonation and/or Pre Ignition Phenomena in Internal Combustion Engines by Monitoring RPM Fluctuation

Номер: US20150019111A1
Принадлежит:

An engine system with advance detection of detonation and/or pre ignition, the system comprising an engine, operative for propulsion of a vehicle by generating rotational motion, whose rotational velocity over time is monitored; and a detonation and/or pre ignition detector operative to provide an alert for impending detonation and/or pre ignition of the engine, if the rotational velocity fluctuates over time to an extent which is predetermined to be unsafe. 1. An engine system with advance detection of detonation and/or pre ignition , the system comprising:An engine, operative for propulsion of a vehicle by generating rotational motion, whose rotational velocity over time is monitored; andA detonation and/or pre ignition detector operative to provide an alert for impending detonation and/or pre ignition of the engine, if the rotational velocity fluctuates over time to an extent which is predetermined to be unsafe.2. A system according to wherein a rotational velocity fluctuation pattern is predetermined to be safe if local fluctuations of the rotational velocity never exceed a threshold value.3. A system according to wherein a rotational velocity fluctuation pattern is predetermined to be unsafe if local fluctuations of the rotational velocity exceed a threshold value at least a predetermined number of times within a predetermined time window.4. A system according to wherein said threshold value comprises 60 rpm.5. A system according to wherein said predetermined time window comprises 10 sec.6. A system according to wherein a rotational velocity fluctuation pattern is predetermined to be safe if fluctuations of the rotational velocity within a time slot whose size is 770 milliseconds+−25% claim 2 , never exceed a threshold value.7. A system according to wherein a rotational velocity fluctuation pattern (RPM fluctuation pattern) is predetermined to be unsafe if fluctuations of the rotational velocity (RPM) within a time slot whose size is 770 millisecond+−25% claim ...

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17-01-2019 дата публикации

INTERNAL COMBUSTION ENGINE, IN PARTICULAR AS DRIVE ENGINE FOR A VEHICLE

Номер: US20190017447A1
Принадлежит:

An internal combustion engine, as a drive engine for a vehicle, including an engine braking device having a throttle element which is associated with an exhaust gas section, for damming an exhaust gas which is emitted by a combustion device, and including a measuring device by means of which the exhaust gas pressure can be measured at a defined measuring region of the exhaust gas section upstream of the throttle element as seen in the exhaust gas flow direction. According to the disclosure, it is provided that at least one further measuring device is provided, by means of which the exhaust gas pressure can be measured at the defined measuring region, for realizing a redundant exhaust gas pressure measurement, and the measurement signals which are determined by means of the measuring devices can be transmitted to a controller for controlling the throttle element. 1. An internal combustion engine , comprising:an engine braking device, wherein the engine braking device has a throttle element which is associated with an exhaust gas section for damming an exhaust gas which is emitted by a combustion device;a measuring device by means of which the exhaust gas pressure can be measured at a defined measuring region of the exhaust gas section upstream of the throttle element as seen in the exhaust gas flow direction; andat least one further measuring device, by means of which the exhaust gas pressure can likewise be measured at the defined measuring region and in that the measurement signals which are determined by means of the measuring devices can be transmitted to a controller, in particular to a controller for controlling the throttle element.2. The internal combustion engine of claim 1 , wherein the internal combustion engine is a drive engine for a vehicle3. The internal combustion engine of claim 1 , wherein the throttle element is a throttle valve.4. The internal combustion engine of claim 1 , wherein the at least one further measuring device is useable for realizing ...

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17-01-2019 дата публикации

METHOD FOR CALCULATING A RESIDUAL GAS MASS IN A CYLINDER OF AN INTERNAL COMBUSTION ENGINE AND CONTROLLER

Номер: US20190017449A1
Принадлежит: VOLKSWAGEN AKTIENGESELLSCHAFT

A method of calculating a residual gas mass in a cylinder of an internal combustion engine, wherein the cylinder has at least one intake valve and one exhaust valve, comprising: obtaining a cylinder residual gas mass base value that is based on a predefined model; determining a first cylinder residual gas mass value that indicates a cylinder residual gas mass remaining in the cylinder clearance volume after an expulsion of exhaust gas; determining a second cylinder residual gas mass value that indicates a cylinder residual gas mass flowing into the cylinder due to a valve overlap of the intake valve and the exhaust valve, wherein the second cylinder residual gas mass value is determined based on the cylinder residual gas mass base value and the first cylinder residual gas mass value; and calculating the residual gas mass in the cylinder, based on the first and second cylinder residual gas mass values. 1. A method for calculating a residual gas mass in a cylinder of an internal combustion engine , wherein the cylinder has at least one intake valve and one exhaust valve , comprising:obtaining a cylinder residual gas mass base value that is based on a predefined model;determining a first cylinder residual gas mass value that indicates a cylinder residual gas mass remaining in the cylinder clearance volume after an expulsion of exhaust gas;determining a second cylinder residual gas mass value that indicates a cylinder residual gas mass flowing into the cylinder due to a valve overlap of the intake valve and the exhaust valve, wherein the second cylinder residual gas mass value is determined based on the cylinder residual gas mass base value and the first cylinder residual gas mass value; andcalculating the residual gas mass in the cylinder, based on the first and second cylinder residual gas mass values.2. The method according to claim 1 , wherein the second cylinder residual gas mass value is determined by subtracting the first cylinder residual gas mass value from the ...

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17-01-2019 дата публикации

METHOD AND CONTROLLER FOR DETERMINING THE QUANTITY OF FILLING COMPONENTS IN A CYLINDER OF AN INTERNAL COMBUSTION ENGINE

Номер: US20190017450A1
Принадлежит: VOLKSWAGEN AKTIENGESELLSCHAFT

A method for determining the quantity of filling components in a cylinder of an internal combustion engine. The cylinder is connected to an air supply via an inlet valve and to an exhaust gas conduit via an outlet valve. The method includes the steps of obtaining an exhaust gas back pressure at a specified point in time when the outlet valve is opened during a work cycle of the internal combustion engine and calculating the quantity of the filling components at the specified point in time on the basis of the obtained exhaust gas back pressure. A controller is also provided for carrying out the method and a motor vehicle is also provided that includes the controller. 1. A method for determining a quantity of a charge component in a cylinder of an internal combustion engine , wherein the cylinder is connected by an intake valve to an air inlet and by an exhaust valve to an exhaust duct , the method comprising:obtaining an exhaust gas back pressure at a predetermined point in time during an operating cycle of the internal combustion engine when the exhaust valve is open; andcalculating the quantity of the charge component at the predetermined point in time based on the exhaust gas back pressure obtained.2. The method according to claim 1 , wherein the predetermined point in time during the operating cycle is a point in time when the intake valve is open.3. The method according to claim 1 , wherein the quantity of the charge component includes a residual gas quantity claim 1 , a fresh air quantity claim 1 , and/or a scavenging air quantity.4. The method according to claim 1 , wherein there is a predetermined relationship between the exhaust gas back pressure at the predetermined point in time and the quantity of the charge component.5. The method according to claim 1 , wherein the quantity of the charge component is additionally dependent on a state parameter of the internal combustion engine.6. The method according to claim 1 , wherein the quantity of the charge ...

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