IP Library Patent Application 16781400
Patent Application
App. No. 16/781,400

ADAPTIVE POWERTRAIN CONTROL OF AN ELECTRIC VEHICLE

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
16/781,400
Abstract

An electric vehicle may include an electric motor, a suspension system, an inverter configured to control the electric motor based on an inverter signal, and a control system. The control system may be configured to receive data indicative a desired torque and data from the suspension system, and determine the inverter signal based on (a) the operator input data and (b) the data from the suspension system, and direct the determined inverter signal to the inverter.

Claims (39)

1 . An electric vehicle, comprising:

an electric motor configured to provide traction for the electric vehicle;

a suspension system;

an inverter operatively coupled to the electric motor, the inverter being configured to control the electric motor based on an inverter signal; and

a control system configured to:

receive operator input data indicative a desired torque;

receive data from the suspension system;

determine the inverter signal based on (a) the operator input data and (b) the data from the suspension system; and

direct the determined inverter signal to the inverter.

2 . The electric vehicle of claim 1 , wherein the control system is configured to determine a weight of the electric vehicle based on the received data from the suspension system.

3 . The electric vehicle of claim 1 , wherein the control system is configured to determine a weight distribution in the electric vehicle based on the received data from the suspension system.

4 . The electric vehicle of claim 1 , wherein the control system is configured to determine a torque request signal based on the received operator input data, and modify the determined torque request signal based on the received data from the suspension system to produce the inverter signal.

5 . The electric vehicle of claim 1 , wherein the suspension system includes a plurality of air-springs and a plurality of pressure sensors configured to detect a pressure associated with the plurality of air-springs.

6 . The electric vehicle of claim 5 , wherein the received data from the suspension system includes data from the plurality of pressure sensors.

7 . The electric vehicle of claim 1 , wherein the suspension system includes one or more air-springs positioned proximate each corner of the vehicle, and pressure sensors configured to detect the pressure associated with the one or air-springs positioned proximate each corner.

8 . The electric vehicle of claim 1 , wherein the suspension system includes a plurality of position sensors, wherein the plurality of position sensors are arranged to determine the height of each corner of the electric vehicle above a common datum.

9 . The electric vehicle of claim 1 , further including an accelerator pedal and a brake pedal, wherein the received operator input data includes data corresponding to a position of one or both of the accelerator pedal and the brake pedal.

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

11 . An electric vehicle, comprising:

a powertrain configured to provide traction, the powertrain including an power controller operatively coupled to an electric motor, the power controller being configured to control the electric motor based on a received power signal;

an accelerator pedal;

a suspension system including (a) one or more air-springs and (b) one or more pressure sensors configured to detect a pressure in the one or more air-springs; and

a control system configured to:

receive data from the accelerator pedal;

receive data from the one or more pressure sensors of the suspension system;

determine the power signal based on (i) the accelerator pedal data and (ii) the data from the one or more pressure sensors.

12 . The electric vehicle of claim 11 , wherein the control system is configured to determine a weight of the electric vehicle based on the received data from the one or more pressure sensors.

13 . The electric vehicle of claim 11 , wherein the control system is configured to determine a weight distribution in the electric vehicle based on the received data from the one or more pressure sensors.

14 . The electric vehicle of claim 11 , wherein the control system is configured to determine a torque request signal based on the received data from the accelerator pedal, and modify the determined torque request signal based on the received data from the one or more pressure sensors to produce the power signal.

15 . The electric vehicle of claim 11 , wherein the suspension system includes one or more air-springs positioned proximate each corner of the vehicle, and the one or more pressure sensors are configured to separately detect the pressure in the one or air-springs positioned proximate each corner.

16 . The electric vehicle of claim 11 , wherein the suspension system further includes a plurality of position sensors, wherein the plurality of pressure sensors are arranged to determine the height of each corner of the electric vehicle above a common datum.

17 . A method of operating a vehicle, comprising:

receiving data indicative of a requested torque from an accelerator pedal of the vehicle;

receiving data indicative of vehicle weight from a suspension system of the electric vehicle;

determining a torque request signal based on (a) the received accelerator pedal data and (b) the received data from the suspension system; and

controlling a power source of the vehicle based on the determined torque request signal to produce torque.

18 . The method of claim 17 , wherein determining the torque request signal includes (i) determining a first signal based on the received data from the accelerator pedal and (ii) modifying the determined first signal based on the received data from the suspension system to produce the torque request signal.

19 . The method of claim 17 , wherein receiving the data indicative of vehicle weight includes receiving at least pressure data associated with one or more air-springs of the suspension system.

20 . The method of claim 17 , further including determining the vehicle weight from the received data from the suspension system.

Assignments (3)
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 Feb 19, 2020
From: SCHEPMANN, SENECA A.; ZELLMER, TYLER J.
To: PROTERRA INC.
Reel/Frame 051855/0155 →