Control of accelerator lift-pedal deceleration in an electric vehicle

US11964568B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11964568-B2
Application numberUS-202017014560-A
CountryUS
Kind codeB2
Filing dateSep 8, 2020
Priority dateSep 8, 2020
Publication dateApr 23, 2024
Grant dateApr 23, 2024

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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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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A vehicle includes a controller programmed to generate a command to an electric machine to reduce a torque output rate after an accelerator pedal is tipped out based upon a vehicle speed value and a wheel acceleration torque value. The torque output rate is initially reduced at a first rate, and is then reduced at a second rate slower than the first rate when the wheel acceleration torque value is greater than 0 Nm.

First claim

Opening claim text (preview).

What is claimed is: 1. A method of controlling deceleration of an electric vehicle comprising: providing a controller that is programmed with a data table to command an electric motor; providing the controller with position data indicating that an accelerator pedal is in a tip-out position; providing the controller with wheel torque data; providing the controller with vehicle speed data when the accelerator pedal is in the tip-out position, wherein the controller generates a first deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; commanding the electric motor based on the first deceleration rate value to set a first wheel torque output rate for a first time period; providing the controller with the wheel torque data, and the vehicle speed data after the first time period with the accelerator pedal in the tip-out position, wherein the controller generates a second deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; and commanding the electric motor based on the second deceleration rate value to set a second wheel torque output rate for a second time period, wherein the second wheel torque output rate is less than the first wheel torque output rate. 2. The method of controlling deceleration of the electric vehicle of claim 1 further comprising: providing the controller with wheel torque data; providing the controller with vehicle speed data after the second time period with the accelerator pedal in the tip-out position, wherein the controller generates a third deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; and commanding the electric motor based on the third deceleration rate value to set a third wheel torque output rate for a third time period, wherein the third wheel torque output rate is less than the second wheel torque output rate. 3. The method of controlling deceleration of the electric vehicle of claim 1 wherein the data table is a three-dimensional calibration table programmed with wheel torque values, and vehicle speed values; wherein the controller generates one of the first deceleration rate, and the second deceleration rate based upon the wheel torque data, and the vehicle speed data. 4. A system for controlling a rate of deceleration of a vehicle comprising: a vehicle speed indicator providing vehicle speed data; a wheel torque indicator providing a wheel torque value; a controller programmed with a data table including the vehicle speed data, and wheel torque data, wherein when an accelerator pedal is in a tip-out position the controller generates a first deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; commanding an electric motor based on the first deceleration rate value to set a first wheel torque output rate for a first time period; providing the controller with the wheel torque data, and the vehicle speed data after the first time period with the accelerator pedal in the tip-out position, wherein the controller generates a second deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; and commanding the electric motor based on the second deceleration rate value to set a second wheel torque output rate for a second time period, wherein the second wheel torque output rate is less than the first wheel torque output rate. 5. The system for controlling the rate of deceleration of the vehicle of claim 4 wherein the first torque output rate is reduced at a second torque output rate less than the first torque output rate when the wheel torque value is greater than 0 Nm. 6. The system for controlling the rate of deceleration of the vehicle of claim 4 further comprising: a brake pedal engagement switch that provides a brake braking signal to the controller to override commanding the electric motor when a brake pedal is engaged after the accelerator pedal is in the tip-out position. 7. The system for controlling the rate of deceleration of the vehicle of claim 4 further comprising: providing the controller with wheel torque data; providing the controller with vehicle speed data after the second time period with the accelerator pedal in the tip-out position, wherein the controller generates a third deceleration rate value based upon the wheel torque data, the vehicle speed data, and the data table; and commanding the electric motor based on the third deceleration rate value to set a third wheel torque output rate for a third time period, wherein the third wheel torque output rate is less than the second wheel torque output rate. 8. The system for controlling the rate of deceleration of the vehicle of claim 4 wherein the data table is a three-dimensional calibration table programmed with wheel torque values, and vehicle speed values, wherein the controller generates one of the first deceleration rate, and the second deceleration rate based upon the wheel torque data, and the vehicle speed data.

Assignees

Inventors

Classifications

  • for braking · CPC title

  • B60L7/18Primary

    Controlling the braking effect (B60L7/12, B60L7/14, B60L7/16 take precedence) · CPC title

  • Torque · CPC title

  • Electric machine technologies in electromobility · CPC title

  • Electric energy management in electromobility · CPC title

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What does patent US11964568B2 cover?
A vehicle includes a controller programmed to generate a command to an electric machine to reduce a torque output rate after an accelerator pedal is tipped out based upon a vehicle speed value and a wheel acceleration torque value. The torque output rate is initially reduced at a first rate, and is then reduced at a second rate slower than the first rate when the wheel acceleration torque value…
Who is the assignee on this patent?
Ford Global Tech Llc
What technology area does this patent fall under?
Primary CPC classification B60L15/2009. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Apr 23 2024 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 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).