IP Library › Granted Patent US 12,630,021
Granted Patent B2
US 12,630,021 · App. 18/664,954 · Granted May 19, 2026

Method for monitoring the wear of a powertrain of an electric vehicle and electric vehicle implementing said method

Inventors: Vincent Brolles (Saint Laurent de Mure, FR); Thomas Barillot (Mornant, FR)
Assignee: VOLVO TRUCK CORPORATION
B60L3/12B60L15/20F16H57/01G01M13/021G01M99/007B60L2240/423F16H2057/012
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Quick Facts
Patent No.
US 12,630,021
App. No.
18/664,954
Granted
May 19, 2026
Kind
B2
Abstract

The method for monitoring the wear of a powertrain includes an analysis cycle that includes, in this order, preventing mechanical components from moving; rotating an electric motor in a first direction until a torque value delivered by the electric motor reaches a predetermined threshold, a first angular position of the electric motor being reached; rotating the electric motor in a second direction opposite to the first direction until a torque value delivered by the electric motor reaches the predetermined threshold, a second angular position of the electric motor being reached; and calculating a backlash value of the powertrain on the basis of the first and second angular positions. The method further includes comparing the backlash value calculated during the analysis cycle to a reference value to monitor wear of the powertrain.

Claims (55)

1 . A method for monitoring the wear of a powertrain of an electric vehicle, the powertrain comprising at least one electric motor and a drivetrain, the drivetrain being configured to deliver a motor torque produced by the electric motor to mechanical components of the electric vehicle to drive the mechanical components,

wherein the method comprises an analysis cycle that includes, in this order:

preventing the mechanical components from moving;

rotating the electric motor in a first direction of rotation until a torque value delivered by the electric motor reaches a predetermined threshold, a first angular position of the electric motor being reached;

rotating the electric motor in a second direction of rotation opposite to the first direction of rotation until a torque value delivered by the electric motor reaches the predetermined threshold, a second angular position of the electric motor being reached;

calculating a backlash value of the powertrain on the basis of the first angular position and of the second angular position,

wherein the method further comprises comparing the backlash value calculated during the analysis cycle to a reference value to monitor wear of the powertrain,

wherein the method further comprises a reference cycle, performed before the analysis cycle, wherein the reference cycle includes, in this order:

preventing the mechanical components from moving;

rotating the electric motor in the first direction of rotation until a torque value delivered by the electric motor reaches the predetermined threshold, a first reference angular position of the electric motor being reached;

rotating the electric motor in the second direction of rotation until a torque value delivered by the electric motor reaches the predetermined threshold, a second reference angular position of the electric motor being reached;

calculating a reference backlash value of the powertrain on the basis of the first reference angular position and of the second reference angular position, and

wherein the reference value against which the backlash value calculated during the analysis cycle is compared is the reference backlash value calculated during the reference cycle.

2 . The method of claim 1 , wherein the analysis cycle further includes:

after the rotation of the electric motor in the first direction of rotation, measuring the first angular position of the electric motor;

after the rotation of the electric motor in the second direction of rotation, measuring the second angular position of the electric motor,

and wherein the backlash value is calculated as the difference between the first angular position and the second angular position.

3 . The method of claim 2 , wherein, prior to the rotation of the electric motor in the first direction of rotation during the analysis cycle, the electric motor is in an initial angular position, wherein the analysis cycle further includes:

calculating a first direction backlash value of the powertrain on the basis of the first angular position and of the initial angular position, and calculating a second direction backlash value of the powertrain on the basis of the second angular position and of the initial angular position, and wherein the method further comprises comparing the first direction backlash value and the second direction backlash value calculated during the analysis cycle to reference values to monitor wear of the powertrain,

wherein the analysis cycle further includes:

prior to the rotation of the electric motor in the first direction of rotation, measuring the initial angular position of the electric motor,

wherein the first direction backlash value is calculated as the difference between the first angular position and the initial angular position,

and wherein the second direction backlash value is calculated as the difference between the initial angular position and the second angular position.

4 . The method of claim 1 , wherein, prior to the rotation of the electric motor in the first direction of rotation during the analysis cycle, the electric motor is in an initial angular position, wherein the analysis cycle further includes:

calculating a first direction backlash value of the powertrain on the basis of the first angular position and of the initial angular position, and calculating a second direction backlash value of the powertrain on the basis of the second angular position and of the initial angular position,

and wherein the method further comprises comparing the first direction backlash value and the second direction backlash value calculated during the analysis cycle to reference values to monitor wear of the powertrain.

5 . The method of claim 1 , wherein the reference cycle further includes:

after the rotation of the electric motor in the first direction of rotation, measuring the first reference angular position of the electric motor;

after the rotation of the electric motor in the second direction of rotation, measuring the second reference angular position of the electric motor;

and wherein the reference backlash value is calculated as the difference between the first reference angular position and the second reference angular position.

6 . The method of claim 5 , wherein, prior to the rotation of the electric motor in the first direction of rotation during the reference cycle, the electric motor is in an initial reference angular position, wherein the reference cycle further includes:

calculating a first direction reference backlash value of the powertrain on the basis of the first reference angular position and of the initial reference angular position, and

calculating a second direction reference backlash value of the powertrain on the basis of the second reference angular position and of the initial reference angular position, and

wherein the reference values against which the first direction backlash value and the second direction backlash value calculated during the analysis cycle are compared are respectively the first direction reference backlash value and the second direction reference backlash value,

wherein the initial cycle further includes:

prior to the rotation of the electric motor in the first direction of rotation, measuring an initial reference angular position of the electric motor,

wherein the first direction reference backlash value is calculated as the difference between the first reference angular position and the initial reference angular position,

and wherein the second direction reference backlash value is calculated as the difference between the initial reference angular position and the second reference angular position.

7 . The method of claim 1 , wherein, prior to the rotation of the electric motor in the first direction of rotation during the reference cycle, the electric motor is in an initial reference angular position, wherein the reference cycle further includes:

calculating a first direction reference backlash value of the powertrain on the basis of the first reference angular position and of the initial reference angular position, and

calculating a second direction reference backlash value of the powertrain on the basis of the second reference angular position and of the initial reference angular position,

and wherein the reference values against which the first direction backlash value and the second direction backlash value calculated during the analysis cycle are compared are respectively the first direction reference backlash value and the second direction reference backlash value.

8 . The method of claim 1 , wherein the analysis cycle is performed:

after a driver of the electric vehicle requests the electric vehicle to start, and before the vehicle actually starts, and/or

after a driver of the electric vehicle requests the electric vehicle to stop, and before the vehicle actually stops.

9 . The method of claim 1 , wherein the electric vehicle is a rechargeable battery electric vehicle, the electric motor being powered by a battery, and wherein the analysis cycle is performed during a recharge of the battery.

10 . The method of claim 1 , wherein the method further comprises repeating the analysis cycle over time to monitor an evolution over time of the backlash values calculated during the repeated analysis cycles.

11 . The method of claim 1 , wherein the drivetrain comprises a gearbox having multiple gear ratio, and wherein the method is performed for each gear ratio of the gearbox, to calculate a backlash value of the powertrain for each gear ratio of the gearbox.

12 . The method of claim 1 , wherein the mechanical components of the vehicle include drive wheels of the vehicle, and wherein, during the analysis cycle of the method, braking is applied on the vehicle to prevent the movement of the vehicle and of the drive wheels.

13 . A vehicle, comprising:

mechanical components;

a powertrain including at least one electric motor and a drivetrain, the drivetrain being configured to deliver a motor torque produced by the electric motor to the mechanical components to drive the mechanical components;

a sensor, configured to obtain an angular position of the electric motor; and

a control unit,

wherein the control unit is configured to perform the method according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2024
From: BROLLES, VINCENT; BARILLOT, THOMAS
To: VOLVO TRUCK CORPORATION
Reel/Frame 067476/0769 →
Priority Claims (1)
EP 23180441 · Jun 20, 2023 · regional
Continuity (1)
Related Publication 20240424908A1 · Dec 26, 2024
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