IP Library Granted Patent US 9,221,338
Granted Patent B2
US 9,221,338 · App. 14/242,727 · Granted Dec 29, 2015

Configurable accelerator pedal

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Quick Facts
Patent No.
US 9,221,338
App. No.
14/242,727
Granted
Dec 29, 2015
Kind
B2
Abstract

An accelerator pedal feedback system is provided that utilizes a virtual spring assembly to provide controllable pedal resistance, thereby supplying the driver with a tactile indicator of changes in a monitored vehicle characteristic, such as a low battery pack level.

Claims (44)

1. A multi-stage vehicle pedal accelerator assembly, comprising:

an accelerator pedal; and

a return force assembly, comprising:

a positioning mechanism, wherein an accelerator linkage arm couples said accelerator pedal to said positioning mechanism, wherein said positioning mechanism is positionable within a range of positions between a minimum pedal loading position that provides minimal accelerator pedal resistance to a maximum pedal loading position that provides maximal accelerator pedal resistance;

a driver coupled to said positioning mechanism, wherein said driver is configured to receive a plurality of control signals and to move said positioning mechanism to a corresponding position within said range of positions in response to each of said plurality of control signals;

a load controller coupled to said driver, said load controller configured to transmit said plurality of control signals to said driver;

a spring; and

a spring compression member coupled to said accelerator linkage arm, wherein said spring applies a nominal return force on said accelerator linkage arm;

a regeneration system coupled to a vehicle battery pack, said regeneration system configured to recharge said vehicle battery pack when activated;

a pedal stroke position sensor, wherein said pedal stroke position sensor monitors travel of said accelerator pedal;

a regeneration system controller coupled to said pedal stroke position sensor and to said regeneration system, said regeneration system controller configured to deactivate said regeneration system when said pedal stroke position sensor detects said accelerator pedal traveling past a preset transition point between a first pedal stroke stage and a second pedal stroke stage during pedal depression, and said regeneration system controller configured to activate said regeneration system when said pedal stroke position sensor detects said accelerator pedal traveling past said transition point between said second pedal stroke stage and said first pedal stroke during pedal release; and

wherein said load controller transmits a first control signal of said plurality of control signals during said first pedal stroke stage and a second control signal of said plurality of control signals during said second pedal stroke stage, wherein a first position of said positioning mechanism corresponding to said first control signal provides less pedal resistance than said second position of said positioning mechanism corresponding to said second control signal.

2. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein said preset transition point is input by a vehicle manufacturer.

3. The multi-stage vehicle pedal accelerator assembly of claim 1 , further comprising a user interface coupled to said load controller, wherein said preset transition point is input into said load controller via said user interface.

4. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein during said second pedal stroke stage said vehicle battery pack is electrically coupled to a vehicle propulsion motor.

5. The multi-stage vehicle pedal accelerator assembly of claim 4 , said regeneration system controller further configured to deactivate said regeneration system after completion of said first pedal stroke stage and prior to initiation of said second pedal stroke stage.

6. The multi-stage vehicle pedal accelerator assembly of claim 1 , further comprising a battery pack management system coupled to a vehicle battery pack and to said load controller, wherein said battery pack management system monitors at least one characteristic of said vehicle battery pack, wherein said load controller transmits a third control signal of said plurality of control signals to said driver when said at least one characteristic of said vehicle battery pack is within a preset range, and wherein said load controller transmits a fourth control signal of said plurality of control signals to said driver when said at least one characteristic of said vehicle battery pack is outside of said preset range.

7. The multi-stage vehicle pedal accelerator assembly of claim 6 , wherein said at least one characteristic of said vehicle battery pack corresponds to a current battery pack capacity.

8. The multi-stage vehicle pedal accelerator assembly of claim 6 , wherein said at least one characteristic of said vehicle battery pack corresponds to an available driving range based on a current battery pack capacity.

9. The multi-stage vehicle pedal accelerator assembly of claim 6 , wherein said at least one characteristic of said vehicle battery pack corresponds to a current battery pack temperature.

10. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein said spring is comprised of a compression coil spring.

11. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein said positioning mechanism is comprised of a screw mechanism, and wherein said driver is comprised of a motor.

12. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein said positioning mechanism is comprised of a hydraulic piston assembly, and wherein said driver is comprised of a hydraulic pump and a hydraulic reservoir.

13. The multi-stage vehicle pedal accelerator assembly of claim 1 , wherein said positioning mechanism is comprised of a pneumatic piston assembly, and wherein said driver is comprised of a pneumatic pump and a pneumatic reservoir.

14. The multi-stage vehicle pedal accelerator assembly of claim 1 , further comprising an accelerator pedal stop, wherein said accelerator pedal stop limits accelerator pedal travel.

15. A multi-stage vehicle pedal accelerator assembly, comprising:

an accelerator pedal; and

a return force assembly, comprising:

a positioning mechanism, wherein an accelerator linkage arm couples said accelerator pedal to said positioning mechanism, wherein said positioning mechanism is positionable within a range of positions between a minimum pedal loading position that provides minimal accelerator pedal resistance to a maximum pedal loading position that provides maximal accelerator pedal resistance;

a driver coupled to said positioning mechanism, wherein said driver is configured to receive a plurality of control signals and to move said positioning mechanism to a corresponding position within said range of positions in response to each of said plurality of control signals;

a load controller coupled to said driver, said load controller configured to transmit said plurality of control signals to said driver;

a spring; and

a spring compression member coupled to said accelerator linkage arm, wherein said spring applies a nominal return force on said accelerator linkage arm; and

a battery pack management system coupled to a vehicle battery pack and to said load controller, wherein said battery pack management system monitors at least one characteristic of said vehicle battery pack, wherein said load controller transmits a first control signal of said plurality of control signals to said driver when said at least one characteristic of said vehicle battery pack is within a preset range, and wherein said load controller transmits a second control signal of said plurality of control signals to said driver when said at least one characteristic of said vehicle battery pack is outside of said preset range.

16. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said at least one characteristic of said vehicle battery pack corresponds to a current battery pack capacity.

17. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said at least one characteristic of said vehicle battery pack corresponds to an available driving range based on a current battery pack capacity.

18. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said at least one characteristic of said vehicle battery pack corresponds to a current battery pack temperature.

19. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said preset range is input by a vehicle manufacturer.

20. The multi-stage vehicle pedal accelerator assembly of claim 15 , further comprising a user interface coupled to said load controller, wherein said preset range is input into said load controller via said user interface.

21. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said spring is comprised of a compression coil spring.

22. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said positioning mechanism is comprised of a screw mechanism, and wherein said driver is comprised of a motor.

23. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said positioning mechanism is comprised of a hydraulic piston assembly, and wherein said driver is comprised of a hydraulic pump and a hydraulic reservoir.

24. The multi-stage vehicle pedal accelerator assembly of claim 15 , wherein said positioning mechanism is comprised of a pneumatic piston assembly, and wherein said driver is comprised of a pneumatic pump and a pneumatic reservoir.

25. The multi-stage vehicle pedal accelerator assembly of claim 15 , further comprising an accelerator pedal stop, wherein said accelerator pedal stop limits accelerator pedal travel.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Apr 5, 2019
From: AYAR THIRD INVESTMENT COMPANY
To: ATIEVA, INC.
Reel/Frame 048811/0472 →
SECURITY INTEREST Recorded Oct 5, 2018
From: ATIEVA, INC.
To: AYAR THIRD INVESTMENT COMPANY
Reel/Frame 047199/0221 →
RELEASE OF SECURITY INTEREST Recorded Sep 24, 2018
From: YINLONG ELECTRIC VEHICLE (HK) GROUP LIMITED
To: ATIEVA, INC.; ATIEVA USA, INC.; AVB METRICS, LLC
Reel/Frame 047620/0451 →
RELEASE OF SECURITY INTEREST Recorded Sep 13, 2018
From: TRINITY CAPITAL FUND III, L.P.
To: ATIEVA, INC.; ATIEVA USA, INC.; AVB METRICS, LLC
Reel/Frame 047529/0619 →
SECURITY INTEREST Recorded Nov 15, 2017
From: ATIEVA, INC.; ATIEVA USA, INC
To: YINLONG ELECTRIC VEHICLE (HK) GROUP LIMITED
Reel/Frame 044457/0942 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Mar 31, 2017
From: ATIEVA, INC
To: TRINITY CAPITAL FUND III, L. P.
Reel/Frame 042125/0897 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2014
From: GAUTHIER, JEAN-PHILIPPE
To: ATIEVA, INC.
Reel/Frame 032577/0176 →