PRECISION PREVENTIVE MAINTENANCE METHOD OF DRIVING UNIT

04-09-2018 дата публикации
Номер:
KR101893744B1
Автор: LEE, YOUNG KYU
Принадлежит: ITS, LEE, YOUNG KYU
Контакты:
Номер заявки: 01-17-102002635
Дата заявки: 11-08-2017

[1]

The present invention refers to method relates to predicts integrity precision driving part, a driving part both drive information is lost during normal state is provided as shown by the lines before collecting information, based on the collected risk value and peak periods and constant velocity section after setting an alarm value, embodiment drive information collected through lines between peak periods and constant velocity section set risk value and an alarm value relative to driving part or more likely suspected condition suitable to perform the servicing or replacement of the driving part is met alarm time signal line diodes otherwise an enormous increase in heating raw integrity to prevent precision driving part predicts method are disclosed.

[2]

Generally used for automated process of a driving section (motor, pump, conveyor, such as ) stable reference voltage is very important disclosed.

[3]

In one example, the plurality of moving part is installed is large transfer factory equipment for achieving interlocked transfer not where it is continuously conveyed materials, if the driving part in the overall operation of the drive unit is stopped when a failure can be situation occurs.

[4]

The driving section otherwise down time generation driving part as well as for a branch, while stopping the facility wasted enormous loss of business and incomplete combustion caused by the hypertensive effects except disclosed.

[5]

Recent Department of industrial safety management comonomers preferably include file further according to industrial safety and high total 10 secretion only name level off and tongs, 18 preferably include the same in terms of cost that the large dished antennae loss etc. when aggregated.

[6]

This unexpected down time cost method to avoid the introduction of pre-maintenance system which predicts an embankment are disclosed. Predicts that the numbers of real number point door under nominal effort already integrity more efficient predicts integrity high integrity which predicts the development of further dimensional database method are disclosed.

[7]

The present invention refers to said door in order to solve a number such as loose number is half number point, both drive information is lost during normal state is driving part drives prior collecting the operation information, based on the collected risk value and peak periods and constant velocity section after setting an alarm value, embodiment drive information collected through lines between peak periods and constant velocity section set risk value and an alarm value relative to driving part or more likely suspected condition suitable to perform the servicing or replacement of the driving part is met alarm time signal line diodes otherwise prevent an enormous increase in heating raw number method predicts a precision driving part integrity and can be recycled.

[8]

In addition, generated in driving various abnormal signs in order to retrieve the various number and when detection conditions, detection condition is satisfied to alert a user when a melody, a block selection for detecting various abnormal symptoms may be hereinafter as well as, good reliability detection result can be integrity method predicts a precision driving part number and can be recycled.

[9]

Said method the present invention according to purposes such as for achieving precision driving part integrity which predicts the driver is operated and the normal drive in measuring time according to the change information is collected by a collecting energy peak periods and constant velocity interval number 1 base the information collection step (S10); on, said lines before said driving part is lost in measuring time according to the change information collecting energy peak periods and constant velocity section to reduce the amount of base the information collection step (S20) number 2; on, said number 1 and number 2 base the information collection step (S10, S20) based on the information collected at the set alarm value (peak warning) peak section (S30); on, said driving part is the change information according to embodiment drive in measuring time intervals collecting energy peak periods and constant charge, the collected energy values of peak interval is set in said setting an alarm value peak section exceeds said alarm state detection step (S40) drive; replaced and,

[10]

Said precharge and measured energy via a drive driving said driving unit, said driving part is rectangular, said driver driving the refrigerant, select any of the power supplying unit frequency are used in said driving unit, said driving unit is driven in said established (S30) therefore includes a plurality of higher energy at the start change, said lines the set exception (exception) intervals are initiated section, said exception period (S40) detecting said driver in said normal state even if the peak energy values of the alarm section exceeds cognitive off driving part, said driving part of the peak energy value exceeds the alarm section maintained constant duration (peak warning duration) said alarm condition to said driving part and can be utilized for recognizing an exception interval even, said duration time is set in said setting (S30) to be characterized.

[11]

Back number

[12]

Back number

[13]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) is set based on information collected at said peak interval value (peak fault) (S40) risk of detecting in said driving part is set in said setting energy values of the peak interval (S30) risk value peak section exceeds the ideal state said driver stored in a,

[14]

Said energy value exceeds said exception period said driving part driving part detects said risk value as a normal state,

[15]

Said energy value exceeds said predetermined movement of said exception period duration (peak fault duration) when said risk exception section maintained even ideal state and can be utilized for recognizing said driver, said risk value is set to a value larger than the value peak section and said alarm, said duration time is set in said setting step (S30) such, said established (S30) sets a constant time (peak alarm period) danger warning section, said driving part (S40) detecting said set energy value exceeds said danger warning period setting is set in said risk (S30) the receipt times greater than said driving part is being sensed to recognize more state characterized.

[16]

Back number

[17]

Back number

[18]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on the set alarm value (mean warning) information collected at a constant section,

[19]

(S40) said drive take-off section in the step of detecting said energy values of said established (S30) exceeds the alarm interval is set constant, a constant duration (mean warning duration) exceeded energy values of said drive take-off section does not maintaining said driving unit detecting a normal state, a constant duration exceeded said drive take-off section energy values of the detected alarm condition and an off said driving unit, said duration time is set in said setting to be characterized.

[20]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on the set value (mean fault) risk of information collected at a constant interval,

[21]

(S40) detecting said energy value (S30) setting said section in said drive take-off set exceeds the constant risk of section, a constant duration (mean fault duration) exceeded said drive take-off section energy values of said detecting driving part does not maintain a normal state, maintaining a constant duration exceeded said drive take-off section energy values of said driver detects the ideal state, said risk value is set to a value larger than said constant velocity section of constant section and an alarm value, said duration time is set in said setting (S30) to be characterized.

[22]

In addition, the step of detecting said peak section (S40) said driving part in energy values of constant duration (peak warning duration) of the peak section exceeds alarm at the same time, constant velocity section energy values of the constant duration exceeds said driver section alarm flag information (mean warning duration) ideal state characterized by performing a compass function.

[23]

In addition, the set value (S30) setting said offset (off set),

[24]

Said driving part is to exceed the energy values of the peak periods and constant velocity section ejection point start and said offset value, said offset value less than said starting point from endpoint to endpoint point by said lines suspended section divides the driving and rest intervals steel number () is repeated while operating said drive drive section collect repeated in each extraction, in a normal driving said drive section of information collected based on a change in amplitude values from the average of the time required to measure driving section according to energy extracted, the extracted said driving section according to a change in amplitude upper limit value based on the average time required to measure the driving energy (Alarm upper limit) and alarm limit value (Alarm lower limit) alarm is set,

[25]

In the step of detecting said movement of said embodiment (S40) in measuring time according to energy of said drive is a variance value is less than said lower limit alarm or alarm exceed the upper limit value to said abnormal state detecting driving part has been characterized.

[26]

In addition, setting said set (S30) is reset at a time (reset time),

[27]

Said driving part peak periods and constant velocity section energy values of said set of multiple search interval the reset time into the characterized every predetermined time disconnected.

[28]

The present invention according to laser diode integrity method predicts the precision driving part, a driving part both drive information is lost during normal state as shown by the lines before collecting information, based on the collected risk value and peak periods and constant velocity section after setting an alarm value, embodiment drive information collected through lines between peak periods and constant velocity section set risk value and an alarm value relative to driving part or more likely suspected condition suitable to perform the servicing or replacement of the driving part is met alarm time signal line diodes otherwise prevent an enormous increase in heating raw equal to or less than.

[29]

In addition, generated in driving various abnormal signs in order to retrieve the various number and when detection conditions, detection condition is satisfied to alert a user when a melody, a block selection for detecting various abnormal symptoms may be hereinafter as well as, good reliability detection result can be equal to or less than.

[30]

Figure 1 shows a method according to an embodiment of the present invention also predicts integrity precision driving part block

[31]

A method of the present invention preferred embodiment according to attached drawing predicts integrity based on detailed precision driving part to each other. The subject matter of invention can be decided to be breach of haze publicly known function and configuration techniques detailed dispensed to each other.

[32]

Figure 1 shows a method according to an embodiment of the present invention block degree timing precision driving part also predicts integrity are disclosed.

[33]

As also shown in 1, according to an embodiment of the present invention predicts integrity method precision driving part (100) on the base the information collection step (S10) number 1, number 2 on base the information collection step (S20), on setting (S30), the step of detecting (S40) contains a.

[34]

Said number 1 base the information collection step (S10) has a driven portion of the normal drive in measuring time according to the change information collecting charge energy peak periods and constant velocity intervals are disclosed.

[35]

(S30) and the step of detecting said information be collected such as said (S40) setting set to detecting symptoms of or more driven in various of the reference values are based.

[36]

Wherein, said lines according to energy peaks at maximum (peak) energy of the section includes a time change information maps and formed means, said constant interval has a range of energy values are continuously maintained stabilized drive section big.

[37]

On the other hand, said measured energy via a drive line precharge and driving said driving unit, said driving part is rectangular, said driver driving the refrigerant, said drive power supplying unit frequency than one used is selected or, limitation of this kind used as well as endured.

[38]

Said number 2 base the information collection step (S20) is said lines before said driving part is lost in measuring time according to the change information collecting charge energy peak periods and constant velocity intervals are disclosed.

[39]

The information base the information collection step (S10) information collected also said number 1 (S30) and the step of detecting (S40) setting said collected at the driven in various symptoms of or more set to detection of the reference values are based.

[40]

Setting said number 1 and number 2 (S30) is said base the information collection step (S10, S20) based on information collected at peak section establishing an alarm value (peak warning) are disclosed.

[41]

I.e., said number 1 and number 2 base the information collection step (S10, S20) said peak section alarm value is based on said long-term gathered information is a malfunction of the driver before the peak period an abnormal change energy values of said driver based on values that are set to be coated.

[42]

(S40) includes the step of detecting said movement of said drive in measuring time according to embodiment energy change information is divided into peak periods and constant velocity section and collected, the collected energy values of the peak interval (S30) setting said peak section exceeds an alarm value is set in said drive detecting alarm state are disclosed.

[43]

I.e., below [picture 1] process such as driving unit drives said peak interval changes in energy values of the peak section set alarm value if so said driving part and said driving part is formed by using the alarm condition required degree of attention is the bottom surface of interest encoded step when it sees.

[44]

[Picture 1]

[45]

[46]

In addition, said driver driving said established (S30) in higher energy at the start change includes a plurality of units, said lines are initiated section the set exception (exception) intervals,

[47]

(S40) detecting said exception period in said driving part driving the energy values of the peak section exceeds a normal state recognition off even if said alarm, said driving part of the peak energy values of the peak section exceeds the alarm section maintained a constant duration (peak warning duration) said driving part to said exception section even recognizing diffuse to the alarm condition.

[48]

Typically the drive to one starts at the time that the energy of the driving part is formed on a selected portion wherein said provided high, in one example below said driving part such as [picture 2] energy induced by said precharge and operation of said driving unit is acquired at the start of said drive unit is driven high current required and the amount of the current steady constant interval while consumption is kept constant as little reach with each other. Current of change of energy such as well as vibration, noise, as well as frequency corresponding to both power supplying unit are disclosed.

[49]

The time at which the peak energy values of said lines starts said drive section is exceeded an alarm value requested by, said exception period peak interval of the peak energy values of said driving part exceeds a normal state if said alarm section recognizing driving part are disclosed.

[50]

Only, said driving part of the peak energy values of said exception section even peak section exceeds said alarm section maintained constant duration if driving part which searches whether the detected alarm condition (recognition), said established (S30) said number 1 and number 2 in this duration time is base the information collection step (S10, S20) based on information collected at are transmitted is set to substrate.

[51]

[Picture 2]

[52]

[53]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) is set based on information collected at said peak interval value (peak fault) (S40) risk of detecting in said driving part is set in said setting energy values of the peak interval (S30) risk value peak section exceeds the ideal state said driver stored in a,

[54]

Said driving part is said energy values of said exception period peak section exceeds said peak interval value risk of driving part detects a normal state,

[55]

Said exception period said driving part is a constant risk of energy values of the peak section exceeds said peak interval duration (peak fault duration) when said maintained even ideal state and can be utilized for recognizing an exception interval said driver, said risk value is set to a value larger than the value peak section said alarm and n is an integer.

[56]

I.e., as said driving part is started at the time that the aforementioned driving said energy of said lines due to crystalline silicon properties said driving part started the time at which the peak section energy values of the requested if it exceeds a danger value by, said movement of said peak interval of the peak energy values of the exception period exceeds a normal state if said risk of section recognizing driving part are disclosed.

[57]

However, such as exception section below said peak interval [picture 3] said driving part is even energy values of the peak section exceeds said case of said driving unit is a constant risk of duration has both detecting abnormal state, said established (S30) said number 1 and number 2 in this duration time is base the information collection step (S10, S20) based on information collected at are transmitted is set to substrate.

[58]

In addition, risk value is said number 1 and number 2 said peak section base the information collection step (S10, S20) based on said long-term gathered information is a malfunction of the driver before the peak period said driving part which sets the energy value based on values that are abnormally change, the risk value is set in said setting said peak section (S30) are set to a value larger than the value peak section alarm.

[59]

The driving unit drives said peak interval changes in process energy values of the peak section exceeds said set is stored in a state or more risk of driving part, a higher level of risk status of an alarm value if it exceeds a peak section, i.e. said driving part is lost in advance before the replacement or repair management must perform steps are detected.

[60]

[Picture 3]

[61]

[62]

In addition, setting a constant time (S30) sets said danger warning section (peak alarm period),

[63]

(S40) detecting said energy values of said driver is set danger warning period exceeds said set in said setting (S30) risk the receipt times greater than said driving part or more state received the request to the other.

[64]

I.e., (S40) detecting said energy values of said driver in danger exceeds the counter , setting said set (S30) risk does not exceed said pre-set circuit in the cervical section drive but is recognized as a normal state if said, [picture 4] below such as said detected exceeds a pre-set time interval defined danger warning if said driver to drive said recognizing the precise ideal state inducing predicts integrity to be coated.

[65]

[Picture 4]

[66]

[67]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on the set alarm value (mean warning) information collected at a constant section,

[68]

(S40) said drive take-off section in the step of detecting said energy values of said established (S30) exceeds the alarm interval is set constant, a constant duration (mean warning duration) exceeded energy values of said drive take-off section does not maintaining said driving unit detecting a normal state, a constant duration exceeded said drive take-off section energy values of the detected alarm condition and an off said driving unit, said duration time is set in said setting and n is an integer.

[69]

Wherein, said drive take-off section includes a constant energy value in a given range setting section 200b, the delimiting said constant velocity section or base the information collection step (S10) energy value within a range of retention times can be collected at said number 1 is appropriate based on user setting information to other.

[70]

In addition, said constant velocity section said number 1 and number 2 base the information collection step (S10, S20) alarm value is based on said long-term gathered information is a malfunction of the driver before generation of the energy values of the constant period said driver circuit selectively change values based sets with each other.

[71]

The driving unit drives said process [picture 5] below such as changes in a constant speed section energy set value having a constant duration is constant when the alarm section exceeds said driving part and said driving part is formed by using the alarm condition required degree of attention is the bottom surface of interest encoded step when it sees.

[72]

If, said driver energy value exceeds said constant interval constant even if maintained constant duration alarm section does not drive said temporary load at constant velocity at section entering said constant velocity section peak interval in normal-car alarm value like a hybridoma is equal to detecting said driver of a steady-state.

[73]

Wherein, said recognition of driving power in said number 1 and number 2 is set to the duration in which said base the information collection step (S10, S20) (S30) setting based on setting information collected at the atmospheric pressure are disclosed.

[74]

[Picture 5]

[75]

[76]

In addition, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on the set value (mean fault) risk of information collected at a constant interval,

[77]

(S40) detecting said energy value (S30) setting said section in said drive take-off set exceeds the constant risk of section, a constant duration (mean fault duration) exceeded said drive take-off section energy values of said detecting driving part does not maintain a normal state, a constant duration exceeded said drive take-off section energy values of an off said abnormal state detecting diffuse to the driving part.

[78]

Wherein, said constant velocity section said number 1 and number 2 base the information collection step (S10, S20) risk of value is based on long-term gathered information is a malfunction of the energy values of the constant period before said drive said driver to an abnormal change values that are based sets, the risk value is set in said constant speed section (S30) are set to a value larger than said constant velocity section setting an alarm value.

[79]

I.e., below said driving unit drives a constant speed section [picture 6] process such as changes in energy set value having a constant duration exceeds said constant risk of section is stored in a state when the driving part or more, than if high levels of risk status of constant section exceeds alarm, i.e. said driving part is lost in advance before the replacement or repair management must perform steps are detected.

[80]

Wherein, said recognition of driving power in said number 1 and number 2 is set to the duration in which said base the information collection step (S10, S20) (S30) setting based on setting information collected at the atmospheric pressure are disclosed.

[81]

[Picture 6]

[82]

[83]

In addition, the step of detecting said peak section (S40) said driving part in energy values of constant duration (peak warning duration) of the peak section exceeds alarm at the same time, constant velocity section energy values of the constant duration exceeds said driver section alarm flag information (mean warning duration) recognizing diffuse to the ideal state.

[84]

[Picture 7] (S40) detecting said driver such as the below said peak in both the energy values of the detected alarm condition thus section, said driver for safe operation of alarm condition even for precise management is required for ideal state periodically in this case said drive said driving part inspection or replacement and repair through management of preferably induces stable operation.

[85]

[Picture 7]

[86]

[87]

In addition, the set value (S30) setting said offset (off set),

[88]

Said driving part is to exceed the energy values of the peak periods and constant velocity section ejection point start and said offset value, said offset value less than said starting point from endpoint to endpoint point by said lines suspended section divides the driving and rest intervals steel number () is repeated while operating said drive drive section collect repeated in each extraction, in a normal driving said drive section of information collected based on a change in amplitude values from the average of the time required to measure driving section according to energy extracted, the extracted said driving section according to a change in amplitude upper limit value based on the average time required to measure the driving energy (Alarm upper limit) and alarm limit value (Alarm lower limit) alarm is set,

[89]

In the step of detecting said movement of said embodiment (S40) in measuring time according to energy of said drive is a variance value is less than said lower limit alarm exceed the upper limit value or said abnormal state detecting diffuse to the alarm has been driving part.

[90]

Such as [picture 8] below, the user setting of offset values to said repetitive said lines section for extracting and hereinafter may be obtained, the drive intervals through said pattern of repetitive energy value (data) of driving power further in a hierarchical, comparison, can be managing, based on said driving part which predicts this data integrity can be performed more effectively.

[91]

[Picture 8]

[92]

[93]

I.e., below said established (S30) [picture 9] such as driven in time period according to said upper limit value and alarm limit value of repetitive energy value based on setting the alarm data, said driver is embodiment drive in the process where the risk of peak interval value or alarm value or a variance value is energy constant section without risk of value or exceeds alarm, said driving part according to exceed the upper limit value or less than a lower limit alarm alarm time variance value is said energy in the form said driving part abrasion due to deterioration, anchor bolt, said driving part to nutritive suspected error load or the like, can be movable through a stable of inducing.

[94]

Wherein, said upper limit value or lower limit value is deterioration of said driver alarm alarm, compression, such as in situations where the load imposed by said drive catch foreign energy values of the abnormal value is changed based on an output set are disclosed.

[95]

In addition, setting of offset values to said side and said driver when said driver is implemented energy values of the offset value is less than said full stop even when said lines to fall point endpoint number steel section can be extracted into various driving conditions can be made easily from that predicts operating mechanism of integrity.

[96]

Wherein, when said driver when said driver is implemented energy values of the offset value is less than said side and a complete rest spaced apart after, a specific duration (off duration) energy is maintained in the host endpoint is set to the driving section driving section can be partitioning said duration.

[97]

, the present invention according to method predicts integrity precision driving part (100) connected to the second circuit indications may occur before failure of the driver is operated by an ideal compression deterioration can occur since an ideal signs of turn said drive otherwise occurred owing to semiconductor manufacturing equipment to the lowest end of the door can be more effectively prevent number point.

[98]

[Picture 9]

[99]

[100]

In addition, setting said set (S30) is reset at a time (reset time),

[101]

Said driving part peak periods and constant velocity section energy values of said set of multiple search section into the reset time every predetermined time disconnected and n is an integer.

[102]

I.e., below said established (S30) such as [picture 10] panel time than said drive energy values of the set of multiple search section divides the continuous extraction can be obtained, searching section through said repeated pattern of energy value (data) of driving power further in a hierarchical, comparison, can be managing, based on said driving part which predicts this data integrity can be performed more effectively.

[103]

The drive section through said offset energy values of the change information extracted repeatedly said search interval based on energy values of the change information extracted repeatedly panel through said driving part can be performed more effectively predicts integrity.

[104]

[Picture 10]

[105]

[106]

On the other hand, below said idle without driving the single driver such as [picture 11] when continuously driven continuous constant velocity section of multiple search interval is formed between the panel through said extraction can be obtained, search section collects the information (data) over a plurality of said comparison between said continuous constant velocity regions of multiple search section of driving power through the contrast of effectively predicts to each other.

[107]

As well as, even when said driving part when the panel is applied to said driving and rest of multiple search section information of driving power said operates effectively's going to the concave disclosed.

[108]

[Picture 11]

[109]

[110]

Said driving part or more detecting symptoms such as procedure according to an embodiment of the present invention predicts integrity method precision driving part (100) during normal state before the driving part both drive information is lost as appearing on lines collecting information, based on the collected risk value and peak periods and constant velocity section after setting an alarm value, embodiment drive information collected through lines between peak periods and constant velocity section set risk value and an alarm value relative to driving part or more likely suspected condition suitable to perform the servicing or replacement of the driving part is met alarm time signal line diodes otherwise prevent an enormous increase in heating raw equal to or less than.

[111]

In addition, generated in driving various abnormal signs in order to retrieve the various number and when detection conditions, detection condition is satisfied to alert a user when a melody, a block selection for detecting various abnormal symptoms may be hereinafter as well as, good reliability detection result can be equal to or less than.

[112]

On the other hand, precision driving part according to an embodiment of the present invention predicts integrity method (100) the driver is operated energy values collection, detection, contrast, various alarm and the like can be implemented with the electronic device via a combination of a negative disclosed.

[113]

In the embodiment shown in the attached drawing the present invention refers to a defined in the embodiment described with reference to an exemplary but not generally described above, the person with skill in the art in the field if various deformation and equally to the therefrom in the embodiment is enabling understand it will rain. In addition, within a range that the idea of the present invention transform one skilled as well as along the vertical transfer are disclosed. Thus, in the present invention is claimed rights description of the text in which defined range which is defined by claims and will carry of technical idea.

[114]

S10. Number 1 base the information collection step S20. Base the information collection step number 2 S30. Setting a S40. The step of detecting 100. Method predicts integrity precision driving part



[1]

The present invention relates to a precision preventive maintenance method of a driving unit, capable of securing excellent reliability for a detection result, which comprises: a first base information collecting step (S10); a second base information collecting step (S20); a setting step (S30) of setting a warning value of a peak section; and a detection step (S40) of detecting the driving unit as an alarm state when an energy value of the peak section exceeds the warning value of the peak section.

[2]

COPYRIGHT KIPO 2018

[3]

[4]

  • (S10) First base information collecting step
  • (S20) Second base information collecting step
  • (S30) Setting step
  • (S40) Detection step



Method predicts integrity in various facilities portion of the driving part, said driving part according to the normal drive in measuring time change information to reduce the amount of energy peak periods and constant velocity section collecting base the information collection step (S10) number 1; said lines before said driving part is lost in measuring time according to the change information is collected by a collecting energy peak periods and constant velocity section number 2 base the information collection step (S20); said number 1 and number 2 base the information collection step (S10, S20) based on the information collected at the set alarm value (peak warning) peak section (S30); and said driving part is the change information according to embodiment drive in measuring time intervals collecting energy peak periods and constant charge, the collected energy values of peak interval is set in said setting an alarm value peak section exceeds said alarm state detection step (S40) drive; replaced and, said measured energy via a drive line precharge and driving said driving unit, said driving part is rectangular, said driver driving the refrigerant, select any of the power supplying unit are used in said drive frequency, said established (S30) said driver is driven in high energy at the start change includes a plurality of units, said lines the set exception (exception) intervals are initiated section, said exception period (S40) detecting said driver in said normal state even if the peak energy values of the alarm section exceeds driving off recognition, said driving part of the peak energy value exceeds the alarm section maintained constant duration (peak warning duration) said alarm condition to said driving part and can be utilized for recognizing an exception interval even, when said duration to be set in said setting (S30) characterized method predicts precision driving part integrity.

Back number

According to Claim 1, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) is set based on information collected at said peak interval value (peak fault) (S40) risk of detecting in said driving part is set in said setting energy values of the peak interval (S30) risk value peak section exceeds the ideal state said driver stored in a, said exception period energy value exceeds said driving part said risk value as a normal state detects said driving unit, said driving unit energy value exceeds said exception period maintained said constant duration (peak fault duration) when said risk exception even ideal state and can be utilized for recognizing said drive section, said risk value is set to a value larger than the value peak section and said alarm, said duration time is set in said setting stage based (S30) such, said established (S30) sets a constant time danger warning section (peak alarm period), said driving part (S40) detecting said set energy value exceeds said danger warning period setting is set in said risk the receipt (S30) times greater than said driving part or more cognitive state is being sensed to method predicts characterized precision driving part integrity.

Back number

According to Claim 1 or Claim 3, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on information collected at constant (mean warning) alarm value setting section which, in the step of detecting said energy value (S30) (S40) said drive take-off section setting said constant interval exceeds the set alarm, a constant duration (mean warning duration) exceeded said drive take-off section energy values of detecting as a normal state does not maintain said driving unit, said driving unit take-off section maintaining a constant duration exceeded the energy values of the detected alarm condition and said driving unit, said duration time is to be set in said setting method predicts characterized precision driving part integrity.

According to Claim 5, setting said number 1 and number 2 (S30) in said base the information collection step (S10, S20) based on the set value (mean fault) risk of information collected at a constant interval, said step of detecting (S40) (S30) setting said value in said drive take-off section energy exceeds the constant risk of section set, a constant duration (mean fault duration) exceeded said drive take-off section energy values of detecting as a normal state does not maintain said driving unit, said driving unit take-off section maintaining a constant duration exceeded the energy values of the detected abnormal state and said driving unit, said risk value is set to a value larger than the value constant section and said constant velocity section alarm, said duration time is to be set in said setting (S30) characterized method predicts precision driving part integrity.

According to Claim 6, in said driving part (S40) detecting said peak interval of the peak (peak warning duration) at the same time duration exceeds energy values of the alarm section constant, constant velocity section energy values of the constant duration exceeds said driver section alarm flag information (mean warning duration) knows the ideal state characterized method predicts precision driving part integrity.

According to Claim 6, said offset (off set) (S30) setting the set value, said driving part is said offset value to exceed the energy values of the peak periods and constant velocity section ejection point and start, suspended by said offset value from said starting point to said endpoint point less than endpoint number steel sections lines divides the driving section and rest while operating said drive () is repeated repeated in each drive section extracting collect, drive section of information collected based on the time required to measure a change in amplitude values from the average of said driving section in a normal driving according to energy extracted, the extracted said driving section according to a change in amplitude upper limit value based on the average time required to measure the driving energy (Alarm lower limit) is set higher than a lower limit alarm (Alarm upper limit) and alarm, said step of detecting (S40) in said driving part in measuring time according to the embodiment of drive energy exceed the upper limit value or less than said lower limit alarm alarm a variance value is said abnormal state detecting said driving unit has been characterized method predicts to precision driving part integrity.

According to Claim 8, panel (reset time) (S30) is set in said setting, said driving part peak periods and constant velocity section energy values of said set of multiple search sections defining reset time every predetermined time disconnected characterized method predicts precision driving part integrity.