Rotary machine control apparatus

US2016006387A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016006387-A1
Application numberUS-201514793390-A
CountryUS
Kind codeA1
Filing dateJul 7, 2015
Priority dateJul 7, 2014
Publication dateJan 7, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A rotary machine control apparatus controlling a drive of a rotary machine that has multiple winding groups is provided. The rotary machine control apparatus includes electric power converters in multiple systems, a failure detection portion, and a control portion. An electric power converter has switching elements in an upper arm and a lower arm and converts DC power. The failure detection portion detects a failure of an electric power converter or a winding group. The control portion calculates a current command value and a maximum current limit value, and controls an output to the electric power converter. The control portion stops the output to the electric power converter in a failure system, and the control portion increases the maximum current limit value with respect to the output to an electric power converter in a normal system.

First claim

Opening claim text (preview).

What is claimed is: 1 . A rotary machine control apparatus controlling a drive of a rotary machine that has a plurality of winding groups, the rotary machine control apparatus comprising: electric power converters in a plurality of systems, wherein each of the electric power converters has a switching element in an upper arm and a switching element in a lower arm and converts DC power to supply to a corresponding winding group corresponding to each of the electric power converters, and the switching element in the upper arm is bridge connected to the switching element in the lower arm; a failure detection portion detecting a failure of an electric power converter or a winding group; and a control portion calculating a current command value, which instructs current sent to each of the winding groups in the rotary machine and a maximum current limit value to the current command value, and controlling an output to each of the electric power converters for each of the systems, wherein: a partial system short circuit failure corresponds to a case where any portion between wirings in the electric power converters or the winding groups in either of the systems is in a conductive state against a control indicating a non-conductive state; and when the failure detection portion detects the partial system short circuit failure in the electric power converter or the winding group in either of the systems, the control portion stops the output to the electric power converter in a failure system, the control portion increases the maximum current limit value as a rotation angular velocity of the rotary machine is larger, and the control portion controls the output to an electric power converter in a normal system. 2 . The rotary machine control apparatus according to claim 1 , wherein: when the failure detection portion detects the partial system short circuit failure, and when the rotation angular velocity of the rotary machine is equal to zero, the control portion sets the maximum current limit value per system to a maximum current limit value per system in a normal drive condition or less; and the normal drive condition corresponds to a case where the electric power converters and the winding groups in all of the systems operate normally. 3 . The rotary machine control apparatus according to claim 1 , wherein: the control portion includes a temperature estimation portion that estimates temperature of an electronic element in the rotary machine control apparatus; and when the failure detection portion detects the partial short circuit failure, the control portion changes the maximum current limit value according to the temperature of the electronic element estimated by the temperature estimation portion and controls the output to the electric power converter in the normal system 4 . The rotary machine control apparatus according to claim 3 , wherein: the control portion calculates a first temporal value of the maximum current limit value according to the rotation angular velocity of the rotary machine; the control portion calculates a second temporal value of the maximum current limit value according to the temperature of the electronic element; the control portion selects a smaller value of the first temporal value and the second temporal value; and the control portion outputs the selected smaller value as a fixed value of the maximum current limit value. 5 . The rotary machine control apparatus according to claim 1 , wherein: a partial system open failure corresponds to a case where any portion between wirings in the electric power converters or the winding groups in either of the systems is in the non-conductive state against a control indicating the conductive state; when the failure detection portion detects the partial system open failure in the electric power converter or the winding group in either of the systems, the control portion stops the output to the electric power converter in the failure system, the control portion sets the maximum current limit value per system to a maximum current limit value per system in a normal drive condition or less, and the control portion controls the output to the electric power converter in the normal system; and the normal drive condition corresponds to a case where the electric power converters and the winding groups in all of the systems operate normally. 6 . The rotary machine control apparatus according to claim 1 , wherein: the rotary machine control apparatus is applied to a vehicular electric power steering apparatus; the rotary machine control apparatus controls a drive of a motor assisting a steering torque; the rotary machine control apparatus receives a coordination control command from a vehicular control apparatus in an upper level, wherein the coordination control command realizes a predetermined operation in a vehicle by a coordination with the electric power steering apparatus and another control apparatus provided to the vehicle; and when the failure detection portion detects the failure of the electric power converter or the winding group in either of the systems, and when the vehicular electric power steering apparatus cannot perform a request of the coordination control command received from the vehicular control apparatus, the control portion rejects reception of the coordination control command. 7 . A rotary machine control apparatus applied to a vehicular electric power steering apparatus and controlling a drive of a motor assisting a steering torque, the motor having a plurality of winding groups, the rotary machine control apparatus comprising: electric power converters in a plurality of systems, wherein each of the electric power converters has a switching element in an upper arm and a switching element in a lower arm, and converts DC power to supply to a corresponding winding group corresponding to each of the electric power converters, the switching element in the upper arm is bridge connected to the switching element in the lower arm; a failure detection portion detecting a failure of an electric power converter or a winding group; and a control portion calculating a current command value, which instructs current sent to each of the winding groups in the motor and a maximum current limit value to the current command value, and controlling an output to each of the electric power converter for each of the systems, wherein: a partial system short circuit failure corresponds to a case where any portion between wirings in the electric power converters or the winding groups in either of the systems is in a conductive state against a control indicating a non-conductive state; and when the failure detection portion detects the partial system short circuit failure in the electric power converter or the winding group in either of the systems, the control portion stops the output to the electric power converter in a failure system, the control portion increases the maximum current limit value as variation amount of the steering torque is larger, and the control portion controls the output to the electric power converter in a normal system 8 . The rotary machine control apparatus according to claim 7 , wherein: a partial system open failure corresponds to a case where any portion between wirings in the electric power converters or the winding groups in either of the systems is in the non-conductive state against a control indicating the conductive state; when the failure detection portion detects the partial system open failure in the electric power converter or the winding group in either of the systems, the control portion stops the output to the electric power converter in the failure system, the control portion sets the maximum current

Assignees

Inventors

Classifications

  • Monitoring commutation; Providing indication of commutation failure · CPC title

  • calculating assisting torque from the motor based on driver input · CPC title

  • H02P25/22Primary

    Multiple windings; Windings for more than three phases · CPC title

  • for reaction to failures, e.g. limp home · CPC title

  • detecting motor faults (B62D5/0496 takes precedence) · CPC title

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What does patent US2016006387A1 cover?
A rotary machine control apparatus controlling a drive of a rotary machine that has multiple winding groups is provided. The rotary machine control apparatus includes electric power converters in multiple systems, a failure detection portion, and a control portion. An electric power converter has switching elements in an upper arm and a lower arm and converts DC power. The failure detection por…
Who is the assignee on this patent?
Denso Corp
What technology area does this patent fall under?
Primary CPC classification H02P25/22. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jan 07 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).