Controller for driving a motor, and electric power assisted vehicle

US2018194430A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2018194430-A1
Application numberUS-201815881525-A
CountryUS
Kind codeA1
Filing dateJan 26, 2018
Priority dateOct 15, 2014
Publication dateJul 12, 2018
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.

In one aspect, a controller for driving a motor of the present invention includes a driving control unit that controls driving of a motor, and a regenerative control unit that instructs the driving control unit to start regeneration when a signal from a pedal rotation sensor that detects a rotation direction of the pedal indicates that the rotation direction of the pedal is backwards, the regenerative control unit controlling an amount of the regeneration in accordance with a backward rotation amount of the pedal while the rotation direction of the pedal is backwards, the backward rotation amount being obtained by the pedal rotation sensor.

First claim

Opening claim text (preview).

What is claimed is: 1 . A controller for driving a motor in an electric power assisted vehicle with a pedal, comprising: a driving control unit that controls driving of a motor; and a regenerative control unit that instructs the driving control unit to start regeneration when a signal received from a pedal rotation sensor that detects a rotation direction of the pedal indicates that the rotation direction of the pedal is backwards, said regenerative control unit controlling an amount of the regeneration in accordance with a backward rotation amount of the pedal while said rotation direction of the pedal is backwards, said backward rotation amount being obtained by the pedal rotation sensor, wherein the regenerative control unit calculates a regeneration target amount based on a speed of the vehicle and has a control coefficient calculation unit that, after the regenerative control unit instructs the driving control unit to start regeneration, calculates a control coefficient to be applied to the regeneration target amount such that a rate at which the control coefficient increases depends on a rate at which the backward rotation amount increases, and wherein the driving control unit controls driving of a motor so as to control regeneration in accordance with the regeneration target amount and the control coefficient. 2 . The controller for driving a motor according to claim 1 , wherein the regenerative control unit, after instructing the driving control unit to start regeneration, instructs the driving control unit to stop regeneration when a signal received from the pedal rotation sensor indicates that the rotation direction of the pedal is forward. 3 . The controller for driving a motor according to claim 1 , wherein the regenerative control unit, after instructing the driving control unit to start regeneration, instructs the driving control unit to stop regeneration when a signal received from a torque sensor indicates that torque has been detected. 4 . The controller for driving a motor according to claim 1 , wherein the control coefficient calculation unit decreases the control coefficient in accordance with a rotation amount of the pedal obtained by the pedal rotation sensor when the rotation direction of the pedal obtained from the pedal rotation sensor is forward relative to a position of the pedal that has moved backwards. 5 . The controller for driving a motor according to claim 4 , wherein the regenerative control unit, after instructing the driving control unit to start regeneration, instructs the driving control unit to stop regeneration when a signal has been received from a torque sensor indicating that torque has been detected. 6 . The controller for driving a motor according to claim 3 , wherein the pedal rotation sensor is integrated with the torque sensor. 7 . An electric power assisted vehicle, comprising: the controller for driving a motor according to claim 1 ; said motor; and said pedal. 8 . The controller for driving a motor according to claim 1 , wherein a slew rate control is applied to the control coefficient so that the control coefficient is raised gradually to a value determined by the backwards rotation amount of the pedal when the regenerative control unit instructs the driving control unit to start regeneration. 9 . The controller for driving a motor according to claim 2 , wherein a slew rate control is applied to the control coefficient so that the control coefficient decreases gradually to zero and the regeneration stops gradually when the regenerative control unit instructs the driving control unit to stop regeneration. 10 . The controller for driving a motor according to claim 3 , wherein a slew rate control is applied to the control coefficient so that the control coefficient decreases gradually to zero and the regeneration stops gradually when the regenerative control unit instructs the driving control unit to stop regeneration. 11 . The controller for driving a motor according to claim 2 , wherein a slew rate control is applied to the control coefficient so that the control coefficient is raised gradually to a value determined by the backwards rotation amount of the pedal when the regenerative control unit instructs the driving control unit to start regeneration, and wherein a slew rate control is applied to the control coefficient so that the control coefficient decreases gradually to zero and the regeneration stops gradually when the regenerative control unit instructs the driving control unit to stop regeneration. 12 . The controller for driving a motor according to claim 3 , wherein a slew rate control is applied to the control coefficient so that the control coefficient is raised gradually to a value determined by the backwards rotation amount of the pedal when the regenerative control unit instructs the driving control unit to start regeneration, and wherein a slew rate control is applied to the control coefficient so that the control coefficient decreases gradually to zero and the regeneration stops gradually when the regenerative control unit instructs the driving control unit to stop regeneration.

Assignees

Inventors

Classifications

  • Electric energy management in electromobility · CPC title

  • with means to change over to human control · CPC title

  • B62M6/45Primary

    Control or actuating devices therefor · CPC title

  • for braking on a slope · CPC title

  • Dynamic electric regenerative braking (B60L7/22 takes precedence) · CPC title

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Frequently asked questions

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What does patent US2018194430A1 cover?
In one aspect, a controller for driving a motor of the present invention includes a driving control unit that controls driving of a motor, and a regenerative control unit that instructs the driving control unit to start regeneration when a signal from a pedal rotation sensor that detects a rotation direction of the pedal indicates that the rotation direction of the pedal is backwards, the regen…
Who is the assignee on this patent?
Taiyo Yuden Kk
What technology area does this patent fall under?
Primary CPC classification B62M6/45. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Jul 12 2018 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).