IP Library Granted Patent US 9,764,658
Granted Patent B1
US 9,764,658 · App. 15/188,757 · Granted Sep 19, 2017

Electric motor control by torque perturbation

Inventor: Seneca Andrew Schepmann (Greenville, SC)
Assignee: Proterra Inc.
B60L15/2045B60L11/1861B60W10/08B60L9/00B60L2200/18B60L2240/421B60L2240/423B60L2250/26B60W20/00B60W2510/081B60W2540/10
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Quick Facts
Patent No.
US 9,764,658
App. No.
15/188,757
Granted
Sep 19, 2017
Kind
B1
Abstract

A control unit of an electric vehicle receives a signal indicative of an operator desired torque and sends a signal to the traction motor to output a value of torque that is the algebraic sum of the operator desired torque and a torque modification factor calculated by the control unit. The control unit calculates the torque modification factor from an efficiency map of the motor which indicates the efficiency of the motor as a function of its output torque and rotational speed.

Claims (33)

1. An electric vehicle, comprising:

an electric motor configured to provide traction for the vehicle;

a control unit configured to:

receive a signal indicative of an operator desired torque and determine a torque modification factor at the desired torque from an efficiency map of the electric motor, the efficiency map indicating an efficiency of the electric motor as a function of output torque and rotational speed; and

calculate a requested torque as the algebraic sum of the received desired torque and the determined torque modification factor; and

an inverter operatively coupled to the control unit and the electric motor, the inverter being configured to receive a signal indicative of the calculated requested torque and control the electric motor to produce the requested torque.

2. The vehicle of claim 1 , wherein the torque modification factor is an incremental value of torque that increases the efficiency of the electric motor without substantially changing a performance of the vehicle.

3. The vehicle of claim 1 , wherein the efficiency map is programmed in the control unit.

4. The vehicle of claim 1 , wherein the torque modification factor is a positive value of torque.

5. The vehicle of claim 1 , wherein the torque modification factor is a negative value of torque.

6. The vehicle of claim 1 , wherein the signal indicative of the operator desired torque is indicative of a position of at least one of an accelerator pedal or a brake pedal of the vehicle.

7. The vehicle of claim 6 , wherein the signal indicative of the desired torque is further based on at least one of (i) a state of charge of a battery of the vehicle, (ii) inclination of the vehicle, and (iii) ambient weather conditions.

8. The vehicle of claim 1 , wherein the vehicle is a bus.

9. A method of controlling an electric traction motor of an electric vehicle, comprising:

receiving, at a control unit, a signal indicative of an operator desired torque;

determining, using the control unit, a torque modification factor at the desired torque from an efficiency map of the electric motor, the efficiency map indicating an efficiency of the electric motor as a function of output torque and rotational speed;

calculating, using the control unit, a requested torque as the algebraic sum of the received desired torque and the determined torque modification factor; and

controlling the electric motor to produce the requested torque.

10. The method of claim 9 , wherein determining the torque modification factor includes determining an incremental value of torque that increases the efficiency of the electric motor without substantially changing a performance of the vehicle.

11. The method of claim 10 , wherein the torque modification factor is determined as a positive value of torque.

12. The method of claim 10 , wherein the torque modification factor is determined as a negative value of torque.

13. The method of claim 9 , wherein determining the torque modification factor includes determining the torque modification factor from the efficiency map programmed in the control unit.

14. The method of claim 9 , wherein receiving the signal indicative of operator desired torque includes receiving a signal indicative of a position of at least one of an accelerator pedal or a brake pedal of the vehicle.

15. The method of claim 14 , wherein receiving the signal indicative of operator desired torque further includes receiving a signal indicative of at least one of (i) a state of charge of a battery of the vehicle, (ii) inclination of the vehicle, and (iii) ambient weather conditions.

16. A method of controlling an electric traction motor of an electric vehicle, comprising:

receiving a signal indicative of an operator desired torque;

determining a torque modification factor at the operator desired torque from an efficiency map of the electric vehicle powertrain, the efficiency map indicating an efficiency of the powertrain as a function of at least output torque, rotational speed, and at least one ambient environmental condition or road condition;

calculating a requested torque as the algebraic sum of the received operator desired torque and the determined torque modification factor; and

controlling the electric motor to produce the requested torque.

17. The method of claim 16 , wherein determining the torque modification factor includes determining an incremental value of torque that increases the efficiency of the powertrain without substantially changing a performance of the vehicle.

18. The method of claim 16 , wherein the torque modification factor is determined as a positive value of torque.

19. The method of claim 16 , wherein the torque modification factor is determined as a negative value of torque.

20. The method of claim 16 , wherein receiving the signal indicative of operator desired torque includes receiving a signal indicative of a position of at least one of an accelerator pedal or a brake pedal of the vehicle.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2026
From: PHOENIX MOTOR, INC.
To: PHOENIXEV INC.
Reel/Frame 074190/0454 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2026
From: PROTERRA OPERATING COMPANY, INC.
To: PHOENIX MOTOR, INC.
Reel/Frame 074121/0828 →
CHANGE OF NAME Recorded Apr 25, 2022
From: PROTERRA INC.
To: PROTERRA OPERATING COMPANY, INC.
Reel/Frame 059789/0254 →
SECURITY INTEREST Recorded Aug 17, 2020
From: PROTERRA INC.
To: CSI GP I LLC, AS COLLATERAL AGENT
Reel/Frame 053519/0441 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2016
From: SCHEPMANN, SENECA ANDREW
To: PROTERRA INC.
Reel/Frame 039126/0541 →