IP Library › Granted Patent US 11,557,996
Granted Patent B1
US 11,557,996 · App. 17/846,481 · Granted Jan 17, 2023

Methods of reducing vibrations for electric motors

Inventor: Anastasios Arvanitis (San Jose, CA)
Assignee: Tula eTechnology, Inc.
H02P21/02
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Quick Facts
Patent No.
US 11,557,996
App. No.
17/846,481
Granted
Jan 17, 2023
Kind
B1
Abstract

A method of controlling an electric motor includes pulsing the electric motor and phase shifting the modulation frequency. Pulsing the electric motor at the modulation frequency propels a vehicle to increase efficiency of the electric motor. Phase shifting the modulation frequency includes phase shifting between 0 degrees and 180 degrees to reduce vibrations induced in the vehicle.

Claims (32)

1. A method of controlling an electric motor, the method comprising:

pulsing the electric motor at a modulation frequency to reduce a duty cycle of the electric motor and to increase efficiency of the electric motor; and

phase shifting the modulation frequency between 0 degrees (0 radians) and 180 degrees (π radians) to reduce vibrations induced in driven equipment.

2. The method according to claim 1 , wherein the phase shifting occurs when the modulation frequency is within a resonance range of the driven equipment.

3. The method according to claim 2 , wherein the resonance range is defined within 10 Hertz (Hz) of a resonance frequency of the driven equipment.

4. The method according to claim 1 , further comprising varying the modulation frequency to generate a target torque.

5. The method according to claim 1 , wherein phase shifting the modulation frequency occurs when the modulation frequency is below 100 Hz.

6. The method according to claim 1 , wherein phase shifting includes phase shifting the modulation frequency at a shifting frequency.

7. The method according to claim 6 , wherein phase shifting the modulation frequency includes the shifting frequency being greater than the modulation frequency.

8. The method according to claim 1 , further comprising time shifting peaks of the phase shifted modulation frequency to level torque delivery.

9. A non-transitory computer-readable medium having instructions stored thereon that, when executed by a controller, cause the controller to:

pulse an electric motor at a modulation frequency to reduce a duty cycle of the electric motor to deliver a target torque and increase efficiency of the electric motor; and

phase shift the modulation frequency between 0 degrees (0 radians) and 180 degrees (π radians) to reduce vibrations resulting from pulsing the electric motor.

10. The non-transitory computer-readable storage medium according to claim 9 , wherein the phase shifting occurs when the modulation frequency is within a resonance range of a structure to which the electric motor is mounted or a component driven by the electric motor.

11. The non-transitory computer-readable storage medium according to claim 9 , wherein phase shifting the modulation frequency occurs when the modulation frequency is below 100 Hz.

12. The non-transitory computer-readable storage medium according to claim 9 , wherein phase shifting includes phase shifting the modulation frequency at a shifting frequency.

13. The non-transitory computer-readable storage medium according to claim 12 , wherein phase shifting the modulation frequency includes the shifting frequency being greater than the modulation frequency.

14. The non-transitory computer-readable storage medium according to claim 9 , wherein the instructions further cause the controller to time shift peaks of the phase shifted modulation frequency to level torque delivery.

15. A controller to operate an electric motor to rotate a driven component, the controller comprising:

a processor; and

a memory including a program to cause the processor to:

pulse the electric motor at a modulation frequency to reduce a duty cycle and increase efficiency of the electric motor to deliver a target torque to the driven component; and

phase shift the modulation frequency between 0 degrees (0 radians) and 180 degrees (π radians) at a shifting frequency.

16. The controller according to claim 15 , wherein the phase shifting occurs wherein the modulation frequency is within a resonance range, the resonance range being stored in the memory of the controller.

17. The controller according to claim 15 , wherein the program further causes the processor to vary the modulation frequency to generate a target torque.

18. The controller according to claim 15 , wherein phase shifting includes phase shifting the modulation frequency at a shifting frequency.

19. The controller according to claim 15 , wherein the program further causes the processor to time shift peaks of the phase shifted modulation frequency to level torque delivery.

20. A drive system comprising:

a structure having at least one resonant frequency;

a driven component;

an electric motor fixed to the structure for rotating the driven component; and

a controller according to claim 15 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2022
From: ARVANITIS, ANASTASIOS
To: TULA ETECHNOLOGY, INC.
Reel/Frame 060276/0220 →
Continuity (1)
Provisional Application 63219467 · Jul 8, 2021
Cited By (5)
US 12,278,581 US 12,301,149 US 12,311,772 US 12,370,907 US 12,609,646