IP Library › Granted Patent US 12,344,090
Granted Patent B2
US 12,344,090 · App. 18/190,717 · Granted Jul 1, 2025

Vehicle pedal that emulates mechanical hysteresis

Inventor: Scott Calkins (Elkhart, IN)
Assignee: CTS Corporation
B60K26/021B60T8/4081G05G5/03
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Quick Facts
Patent No.
US 12,344,090
App. No.
18/190,717
Granted
Jul 1, 2025
Kind
B2
Abstract

A pedal assembly for a vehicle that includes a pedal, a sensor configured to sense a force exerted on the pedal, and an electronic processor connected to the sensor. The electronic processor is configured to determine a first output value, and receive a signal indicative of the force exerted on the pedal from the sensor. The electronic processor is further configured to determine a second output value based on the force exerted on the pedal, the first output value, and a model that defines a mechanical hysteresis effect and generate an output signal for controlling the vehicle, the output signal corresponding to the second output value.

Claims (51)

1. A pedal assembly for a vehicle comprising:

a pedal;

a sensor configured to sense a force exerted on the pedal; and

an electronic processor connected to the sensor, the electronic processor configured to:

determine a first output value;

determine a first threshold based on the first output value and a first parameter;

receive a signal indicative of the force exerted on the pedal from the sensor;

determine whether the force exerted on the pedal exceeds the first threshold;

determine a proposed output value when the force exerted on the pedal exceeds the first threshold;

determine whether the proposed output value exceeds a maximum output value;

generate a first output signal for controlling the vehicle when the proposed output value does not exceed the maximum output value, the first output signal corresponding to the proposed output value;

generate a second output signal for controlling the vehicle when the proposed output value exceeds the maximum output value, the second output signal corresponding to the maximum output value;

determine a second threshold based on the first output value and a second parameter when the force exerted on the pedal does not exceed the first threshold;

determine whether the force exerted on the pedal is less than the second threshold;

determine a second proposed output value when the force exerted on the pedal is less than the second threshold;

determine whether the second proposed output value is less than a minimum output value;

generate a third output signal for controlling the vehicle when the second proposed output value is less than the minimum value, the third output signal corresponding to the minimum output value; and

generate a fourth output signal for controlling the vehicle when the second proposed output value exceeds the minimum output value, the fourth output signal corresponding to the second proposed output value.

2. The pedal assembly of claim 1 , wherein the first parameter is a rate of change of a first function that defines a first boundary in a hysteresis loop.

3. The pedal assembly of claim 2 , wherein the electronic processor is further configured to determine the proposed output value using the first function.

4. The pedal assembly of claim 1 , wherein the second parameter is a rate of change of a second function that defines a second boundary in a hysteresis loop, and wherein the pedal is a low displacement pedal.

5. The pedal assembly of claim 4 , wherein the electronic processor is further configured to determine the second proposed output value using the second function.

6. The pedal assembly of claim 1 , wherein the electronic processor is contained within a body of the pedal assembly; and

wherein the electronic processor is further configured to provide the second output signal to a vehicle control unit located outside of the body of the pedal assembly.

7. The pedal assembly of claim 1 , wherein the electronic processor is included in a vehicle control unit; and

wherein the vehicle control unit is located outside of a body of the pedal assembly.

8. The pedal assembly of claim 1 , wherein the first parameter and the second parameter are based on a model that defines a mechanical hysteresis effect.

9. The pedal assembly of claim 1 , wherein the first parameter is rate of change of a linear function defining a pressing boundary.

10. The pedal assembly of claim 1 , wherein the second parameter is rate of change of a linear function defining a releasing boundary.

11. A method for emulating a mechanical hysteresis effect in a pedal assembly for a vehicle, the pedal assembly including a pedal, a sensor configured to sense a force exerted on the pedal, and an electronic processor connected to the sensor, the method comprising:

determining, via the electronic processor, a first output value;

determining, via the electronic processor, a first threshold based on the first output value and a first parameter;

receiving, via the electronic processor a signal indicative of the force exerted on the pedal from the sensor;

determining, via the electronic processor, whether the force exerted on the pedal exceeds the first threshold;

determining, via the electronic processor, a proposed output value when the force exerted on the pedal exceeds the first threshold;

determining, via the electronic processor, whether the proposed output value exceeds a maximum output value;

generating, via the electronic processor, a first output signal for controlling the vehicle when the proposed output value does not exceed the maximum output value, the first output signal corresponding to the proposed output value;

generating, via the electronic processor, a second output signal for controlling the vehicle when the proposed output value exceeds the maximum output value, the second output signal corresponding to the maximum output value;

determining, via the electronic processor, a second threshold based on the first output value and a second parameter when the force exerted on the pedal does not exceed the first threshold;

determining, via the electronic processor, whether the force exerted on the pedal is less than the second threshold;

determining, via the electronic processor, a second proposed output value when the force exerted on the pedal is less than the second threshold;

determining, via the electronic processor, whether the second proposed output value is less than a minimum output value;

generating, via the electronic processor, a third output signal for controlling the vehicle when the second proposed output value is less than the minimum value, the third output signal corresponding to the minimum output value; and

generating, via the electronic processor, a fourth output signal for controlling the vehicle when the second proposed output value exceeds the minimum output value, the fourth output signal corresponding to the second proposed output value.

12. The method of claim 11 , wherein the first parameter is a rate of change of a first function that defines a first boundary in a hysteresis loop.

13. The method of claim 12 , further comprising determining, via the electronic processor, the proposed output value using the first function.

14. The method of claim 11 , wherein the second parameter is a rate of change of a second function that defines a second boundary in a hysteresis loop.

15. The method of claim 14 , further comprising determining, via the electronic processor, the second proposed output value using the second function, and wherein the pedal is a low displacement pedal.

16. The method of claim 11 , wherein the first parameter and the second parameter are based on a model that defines a mechanical hysteresis effect.

17. The method of claim 11 , wherein the first parameter is rate of change of a linear function defining a pressing boundary.

18. The method of claim 11 , wherein the second parameter is rate of change of a linear function defining a releasing boundary.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2023
From: CALKINS, SCOTT
To: CTS CORPORATION
Reel/Frame 063136/0641 →
Continuity (2)
Provisional Application 63362021 · Mar 28, 2022
Related Publication 20230302898A1 · Sep 28, 2023
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