IP Library Granted Patent US 11,590,977
Granted Patent B2
US 11,590,977 · App. 16/731,685 · Granted Feb 28, 2023

Systems and methods for providing a vehicle with a torque vectored K-turn mode

Inventor: Lucas Keller (Farmington Hills, MI)
Assignee: Rivian IP Holdings, LLC
B60W30/18145B60K1/02B60K5/08B60K17/16B60W10/119B60W10/184B62D6/00B60W2720/403B60W2720/406
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Quick Facts
Patent No.
US 11,590,977
App. No.
16/731,685
Granted
Feb 28, 2023
Kind
B2
Abstract

Systems and methods are provided herein for operating a vehicle in a K-turn mode. The K-turn mode is engaged in response to determining that an amount that at least one of the front wheels of the vehicle is turned exceeds a turn threshold. While operating in the K-turn mode, forward torque is provided to the front wheels of the vehicle. Further, backward torque is provided to the rear wheels of the vehicle. Yet further, the rear wheels of the vehicle remain substantially in static contact with a ground while the front wheels slip in relation to the ground.

Claims (90)

1. A method for turning a vehicle in a K-turn mode, wherein the vehicle comprises front wheels and rear wheels, the method comprising:

engaging the K-turn mode when an amount that the front wheels of the vehicle is turned exceeds a turn threshold; and

while operating in the K-turn mode, causing the vehicle to rotate by simultaneously providing:

forward torque to the front wheels of the vehicle at a given time; and

backward torque to the rear wheels of the vehicle at the given time,

wherein providing forward torque to the front wheels of the vehicle at the given time comprises:

providing forward torque to an inner front wheel of the vehicle; and

providing forward torque to an outer front wheel of the vehicle.

2. The method of claim 1 , wherein providing backward torque to the rear wheels of the vehicle at the given time comprises:

providing backward torque to an inner rear wheel of the vehicle; and

providing backward torque to an outer rear wheel of the vehicle,

wherein the rear wheels of the vehicle are substantially in static contact with a ground.

3. The method of claim 2 , further comprising:

monitoring rotation of each of the rear wheels; and

while operating in the K-turn mode and in response to identifying rear wheel slip in at least one of the rear wheels of the vehicle, applying a corrective action to the rear wheel exhibiting slip, wherein the corrective action is selected from at least one of applying a brake to the rear wheels and reducing backward torque to the rear wheels.

4. The method of claim 1 ,

wherein the front wheels of the vehicle are slipping relative to a ground.

5. The method of claim 4 , further comprising:

monitoring rotation of the inner front wheel and the outer front wheel; and

while operating in the K-turn mode, controlling the forward torque of the front wheels such that the rotation of the inner front wheel is approximately equal to the rotation of the outer front wheel.

6. The method of claim 4 , further comprising:

monitoring rotation of the inner front wheel and the outer front wheel;

comparing the rotation of the inner front wheel and the outer front wheel to a target spin rate; and

controlling the forward torque to the front wheels of the vehicle based on the comparison.

7. The method of claim 1 , wherein:

the forward torques cause front forces to be exerted on a ground by the front wheels;

the front forces comprise forward force components and lateral force components;

the backward torques cause rearward force components to be exerted on the ground by the rear wheels; and

a sum of the forward force components is substantially equal to a sum of the rearward force components.

8. The method of claim 1 , further comprising:

receiving rotation information of the vehicle from at least one sensor;

receiving a throttle input; and

while operating in the K-turn mode, controlling the forward torque to the front wheels of the vehicle and the backward torque to the rear wheels of the vehicle based on the rotation information and the throttle input.

9. The method of claim 1 , wherein:

providing forward torque to the front wheels of the vehicle at the given time comprises using a first motor mechanically coupled to the front wheels via a first differential; and

providing backward torque to the rear wheels of the vehicle at the given time comprises using a second motor mechanically coupled to the rear wheels via a second differential.

10. The method of claim 1 , wherein providing backward torque to the rear wheels of the vehicle at the given time comprises:

providing backward torque to an outer rear wheel of the vehicle using a first motor coupled to the outer rear wheel via a first gearbox; and

providing backward torque to an inner rear wheel of the vehicle using a second motor coupled to the inner rear wheel via a second gearbox.

11. The method of claim 1 , wherein:

providing forward torque to the front wheels of the vehicle at the given time comprises a first motor configured to transmit torque to the outer front wheel and a second motor configured to transmit torque to the inner front wheel; and

providing backward torque to the rear wheels of the vehicle at the given time comprises a third motor configured to transmit torque to an outer rear wheel and a fourth motor configured to transmit torque to an inner rear wheel.

12. The method of claim 1 , further comprising:

disengaging from the K-turn mode in response to:

determining that the amount that the front wheels of the vehicle is turned is below the turn threshold.

13. The method of claim 1 , further comprising:

determining that the amount that the front wheels of the vehicle is turned is between the turn threshold and a lower turn threshold;

in response to determining that the amount that the front wheels of the vehicle is turned is between the turn threshold and the lower turn threshold, engaging a front dig mode; and

while operating in the front dig mode:

providing forward torque to the front wheels of the vehicle;

applying resistance to forward rotation of an inner rear wheel of the vehicle; and

providing forward torque to an outer rear wheel of the vehicle.

14. A vehicle configured for turning in a K-turn mode, the vehicle comprising:

front wheels;

at least one first motor configured to provide torque to the front wheels;

rear wheels;

at least one second motor configured to provide torque to the rear wheels; and

control circuitry configured to:

engage the K-turn mode when an amount that the front wheels of the vehicle is turned exceeds a turn threshold; and

while operating in the K-turn mode, cause the vehicle to rotate by simultaneously controlling:

the at least one first motor to provide forward torque to the front wheels of the vehicle at a given time; and

the at least one second motor to provide backward torque to the rear wheels of the vehicle at the given time,

wherein the control circuitry is configured to control the at least one first motor to provide forward torque to the front wheels at the given time by:

providing forward torque to an inner front wheel; and

providing forward torque to an outer front wheel.

15. The vehicle of claim 14 , wherein the control circuitry is configured to control the at least one second motor to provide backward torque to the rear wheels at the given time by:

providing backward torque to an inner rear wheel while maintaining the inner rear wheel in static contact with a ground; and

providing backward torque to an outer rear wheel of the vehicle while maintaining the outer rear wheel in static contact with the ground.

16. The vehicle of claim 14 , wherein the control circuitry is further configured to control the at least one first motor to provide forward torque to the front wheels at the given time by:

providing forward torque to the inner front wheel while maintaining slippage of the inner front wheel relative to a ground; and

providing forward torque to the outer front wheel while maintaining slippage of the outer front wheel relative to the ground.

17. The vehicle of claim 14 , further comprising:

a front differential mechanically coupled to the at least one first motor and the front wheels, wherein the at least one first motor provides torque to the front wheels via the front differential; and

a rear differential mechanically coupled to the at least one second motor and the rear wheels, wherein the at least one second motor provides torque to the rear wheels via the rear differential.

18. The vehicle of claim 14 , wherein:

the at least one second motor comprises a first rear motor and a second rear motor; and

the control circuitry is configured to control the at least one second motor to provide backward torque to the rear wheels at the given time by:

providing backward torque to an outer rear wheel of the vehicle using the first rear motor; and

providing backward torque to an inner rear wheel using the second rear motor.

19. The vehicle of claim 14 , wherein:

the control circuitry is configured to control the at least one first motor to provide forward torque to the front wheels, the at least one first motor comprises a first front motor configured to transmit torque to the outer front wheel and a second front motor configured to transmit torque to the inner front wheel; and

the control circuitry is configured to control the at least one second motor to provide backward torque to the rear wheels, the at least one second motor comprises a third rear motor configured to transmit torque to an outer rear wheel and a forth rear motor configured to transmit torque to an inner rear wheel.

20. A non-transitory computer-readable medium having instructions encoded thereon that, when executed by control circuitry of a vehicle comprising front wheels and rear wheels, cause the control circuitry to:

engage a K-turn mode when an amount that the front wheels of the vehicle is turned exceeds a turn threshold; and

while operating in the K-turn mode, cause the vehicle to rotate by simultaneously causing:

forward torque to be applied to the front wheels of the vehicle at a given time; and

backward torque to be applied to the rear wheels of the vehicle at the given time,

wherein causing forward torque to the front wheels of the vehicle at the given time comprises:

causing forward torque to be applied to an inner front wheel of the vehicle; and

causing forward torque to be applied to an outer front wheel of the vehicle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2020
From: KELLER, LUCAS
To: RIVIAN AUTOMOTIVE, LLC
Reel/Frame 051826/0144 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2020
From: RIVIAN AUTOMOTIVE, INC.
To: RIVIAN IP HOLDINGS, LLC
Reel/Frame 051826/0176 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2020
From: RIVIAN AUTOMOTIVE, LLC
To: RIVIAN AUTOMOTIVE, INC.
Reel/Frame 051826/0179 →
Continuity (1)
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