Variable magnetization machine controller

US10146211B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10146211-B2
Application numberUS-201314911270-A
CountryUS
Kind codeB2
Filing dateSep 12, 2013
Priority dateSep 12, 2013
Publication dateDec 4, 2018
Grant dateDec 4, 2018

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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A variable magnetization machine controller including a hysteresis control component configured to receive an ideal magnetization state signal, output an actual magnetization signal based on the ideal magnetization state signal for control of a variable magnetization machine, and modify the actual magnetization state signal in accordance with an error value between the ideal magnetization state signal and the actual magnetization state signal.

First claim

Opening claim text (preview).

What is claimed is: 1. A variable magnetization machine controller comprising: a hysteresis control component configured to receive an ideal magnetization state signal, output an actual magnetization signal based on the ideal magnetization state signal for control of a variable magnetization machine, and modify the actual magnetization state signal in accordance with an error value between the ideal magnetization state signal and the actual magnetization state signal, the ideal magnetization state signal indicating a magnetization state in which an energy loss is minimal. 2. The variable magnetization machine controller according to claim 1 , wherein the hysteresis control component comprises a proportional-integral compensator that is configured to receive an error signal representing the error value and remove a steady state error from the error signal so that the hysteresis control component modifies the actual magnetization state signal in accordance with the error value from which the steady state error has been removed. 3. The variable magnetization machine controller according to claim 2 , wherein the compensator is configured to change compensation characteristics in accordance with a driving pattern of a vehicle including the variable magnetization machine and the variable magnetization machine controller, the compensator being configured to remove the steady state error signal based on the compensation characteristics. 4. The variable magnetization machine controller according to claim 2 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 5. The variable magnetization machine controller according to claim 3 , further comprising a location determining device configured to determine a location of the vehicle based on which the driving pattern of the vehicle is determined. 6. The variable magnetization machine controller according to claim 3 , further comprising: a driving mode selection device configured to select a driving mode of the vehicle based on which the driving pattern of the vehicle is determined. 7. The variable magnetization machine controller according to claim 3 , further comprising: a driving history recordation device configured to record a driving history of the vehicle over a period of time such the driving pattern of the vehicle is determined based on the driving history. 8. The variable magnetization machine controller according to claim 3 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 9. The variable magnetization machine controller according to claim 5 , wherein the location determining device includes a global positioning system device. 10. The variable magnetization machine controller according to claim 5 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 11. The variable magnetization machine controller according to claim 6 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 12. The variable magnetization machine controller according to claim 7 , further comprising: a component configured to perform a fast fourier transform process on data representing the driving history. 13. The variable magnetization machine controller according to claim 7 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 14. The variable magnetization machine controller according to claim 9 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 15. A variable magnetization machine controller comprising: a hysteresis control component configured to receive an ideal magnetization state signal, output an actual magnetization signal based on the ideal magnetization state signal for control of a variable magnetization machine, and modify the actual magnetization state signal in accordance with an error value between the ideal magnetization state signal and the actual magnetization state signal; and a signal modifying component configured to modify the ideal magnetization state signal prior to inputting the ideal magnetization state signal into the sample and hold circuit, the hysteresis control component comprising a sample and hold component that is configured to output the actual magnetization state signal and to modify the actual magnetization state signal in accordance with the error value. 16. The variable magnetization machine controller according to claim 15 , wherein the signal modifying component includes a proportional plus derivative compensator configured to modify the ideal magnetization state signal. 17. The variable magnetization machine controller according to claim 15 , wherein the hysteresis control component comprises a proportional-integral compensator that is configured to receive an error signal representing the error value and remove a steady state error from the error signal so that the hysteresis control component modifies the actual magnetization state signal in accordance with the error value from which the steady state error has been removed. 18. The variable magnetization machine controller according to claim 15 , wherein the hysteresis control component is further configured to output a pulse signal in synchronization with the actual magnetization signal such that the variable magnetization machine is further controlled in accordance with the pulse signal. 19. A variable magnetization machine controller, comprising: a hysteresis control component configured to receive an ideal magnetization state signal, output an actual magnetization signal based on the ideal magnetization state signal for control of a variable magnetization machine, and modify the actual magnetization state signal in accordance with an error value between the ideal magnetization state signal and the actual magnetization state signal, the hysteresis control component being further configured to output a pulse signal in synchronization with the actual magnetization state signal such that the variable magnetization machine is further controlled in accordance with the pulse signal.

Assignees

Inventors

Classifications

  • characterised by program execution, i.e. part program or machine function execution, e.g. selection of a program · CPC title

  • Physical arrangements or structures of drive train converters specially adapted for the propulsion motors of electric vehicles · CPC title

  • Clamp detachable teaching box magnetically on housing · CPC title

  • B60L15/025Primary

    using field orientation; Vector control; Direct Torque Control [DTC] · CPC title

  • Stator flux based control involving the use of rotor position or rotor speed sensors · CPC title

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What does patent US10146211B2 cover?
A variable magnetization machine controller including a hysteresis control component configured to receive an ideal magnetization state signal, output an actual magnetization signal based on the ideal magnetization state signal for control of a variable magnetization machine, and modify the actual magnetization state signal in accordance with an error value between the ideal magnetization state…
Who is the assignee on this patent?
Nissan Motor, Wisconsin Alumni Res Found
What technology area does this patent fall under?
Primary CPC classification G05B19/4155. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Dec 04 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).