IP Library Granted Patent US 11,592,821
Granted Patent B2
US 11,592,821 · App. 16/780,191 · Granted Feb 28, 2023

Power moding for reduction of vehicle power consumption

Inventors: Jeffrey Brandon (Phoenix, AZ); Chase Kaufman (Fountain Hills, AZ)
Assignee: GM CRUISE HOLDINGS LLC
G05D1/0088B60H1/00642G05D1/0231G05D1/0278G05D2201/0213
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Quick Facts
Patent No.
US 11,592,821
App. No.
16/780,191
Granted
Feb 28, 2023
Kind
B2
Abstract

The present disclosure provides a method including determining an operational mode of a vehicle based on data accumulated from at least one vehicle information system associated with the vehicle; selecting one of a plurality of power consumption profiles for the vehicle based on the determined operational mode; and applying the selected one of the power consumption profiles to the vehicle.

Claims (68)

1. A method comprising:

determining which operational mode of a plurality of operational modes a vehicle is currently operating in based on data accumulated from at least one vehicle information system associated with the vehicle;

selecting one of a plurality of power consumption profiles for the vehicle based on the determined operational mode; and

applying the selected one of the power consumption profiles to the vehicle;

wherein the plurality of operational modes includes:

a first operational mode in which the vehicle is determined to be parked;

a second operational mode in which the vehicle is determined to be undergoing testing in a controlled environment;

a third operational mode in which the vehicle is determined to be undergoing at least one of maintenance and inspection;

a fourth operational mode in which the vehicle is determined to be at least one of charging, making a delivery, and deadheading; and

a fifth operational mode in which the vehicle is determined to be providing a service to a passenger; and

wherein the applying the selected one of the power consumption profiles comprises:

adjusting a level of operation of a wireless connection between the vehicle and a remote system;

adjusting a level of operation of one or more cabin features of the vehicle; and

adjusting a level of operation of an automatic drive system computer (ADSC) of the vehicle.

2. The method of claim 1 further comprising monitoring the operational mode of the vehicle.

3. The method of claim 2 further comprising:

detecting a change in the operational mode of the vehicle;

subsequent to the detecting, determining a new operational mode of the vehicle;

selecting a new one of the plurality of power consumption profiles based on the determined new operational mode; and

applying the selected new one of the power consumption profiles to the vehicle.

4. The method of claim 1 , wherein the at least one vehicle information system comprises at least one of a sensor suite, an onboard computer, a mapping information system, a GPS system, a vehicle coordinator, a remote expert interface, and a remote system.

5. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises adjusting at least one of the vehicle's HVAC system and user interface.

6. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises adjusting operation of an Autonomous Drive System Computer (“ADSC”) of the vehicle.

7. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises adjusting operation of a wireless connection of the vehicle to a back office.

8. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises placing a wireless connection of the vehicle to the back office into a sleep mode, powering off an Autonomous Drive System Computer (“ADSC”) of the vehicle, and powering off an HVAC system and user interface of the vehicle.

9. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises powering off a wireless connection of the vehicle to the back office, powering off an Autonomous Drive System Computer (“ADSC”) of the vehicle, and powering off an HVAC system and user interface of the vehicle.

10. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises powering on a wireless connection of the vehicle to the back office, powering off an Autonomous Drive System Computer (“ADSC”) of the vehicle, and powering off an HVAC system and user interface of the vehicle.

11. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises powering on a wireless connection of the vehicle to the back office, powering on an Autonomous Drive System Computer (“ADSC”) of the vehicle, and powering off an HVAC system and user interface of the vehicle.

12. The method of claim 1 , wherein the applying the selected one of the power consumption profiles comprises powering on a wireless connection of the vehicle to the back office, powering on an Autonomous Drive System Computer (“ADSC”) of the vehicle, and powering on an HVAC system and user interface of the vehicle.

13. The method of claim 1 , wherein the selecting one of a plurality of power consumption profiles for the vehicle is further based on at least one additional factor comprising at least one of an environmental condition, a safety consideration, a geographic location, an intent of the vehicle, and an anticipated operational mode of the vehicle.

14. A method comprising:

continuously monitoring an operational mode of an autonomous vehicle (AV);

detecting a change in the operational mode of the AV;

determining which operational mode of a plurality of operational modes the AV is currently operating in, wherein the determining is performed based on data received from at least one vehicle information system associated with the AV;

selecting one of a plurality of power consumption profiles for the AV based on the determined operational mode and at least one additional factor; and

applying the selected one of the power consumption profiles to the AV;

wherein the plurality of operational modes includes:

a first operational mode in which the AV is determined to be parked;

a second operational mode in which the AV is determined to be undergoing testing in a controlled environment;

a third operational mode in which the AV is determined to be undergoing at least one of maintenance and inspection;

a fourth operational mode in which the AV is determined to be at least one of charging, making a delivery, and deadheading; and

a fifth operational mode in which the AV is determined to be providing a service to a passenger; and

wherein the applying the selected one of the power consumption profiles comprises:

adjusting a level of operation of a wireless connection between the AV and a remote system;

adjusting a level of operation of one or more cabin features of the AV; and

adjusting a level of operation of an automatic drive system computer (ADSC) of the AV.

15. The method of claim 14 , wherein the at least one vehicle information system comprises at least one of a sensor suite, an onboard computer, a mapping information system, a GPS system, a vehicle coordinator, a remote expert interface, and a remote system.

16. The method of claim 14 , wherein the applying the selected one of the power consumption profiles comprises adjusting at least one of the AV's HVAC system and user interface.

17. The method of claim 14 , wherein the applying the selected one of the power consumption profiles comprises adjusting operation of an Autonomous Drive System Computer (“ADSC”) of the AV.

18. The method of claim 14 , wherein the at least one additional factor comprises at least one of an environmental condition, a safety consideration, a geographic location, an intent of the AV, and an anticipated operational mode of the AV.

19. An autonomous vehicle (“AV”) comprising:

an onboard computer;

a sensor suite comprising a plurality of imaging and sensing devices; and

a power moding system configured to:

determine which operational mode of a plurality of operational modes the AV is currently operating in based on data accumulated from at least one vehicle information system associated with the AV, wherein the at least one vehicle information system comprises at least one of a sensor suite, an onboard computer, a mapping information system, a GPS system, a vehicle coordinator, a remote expert interface, and a remote system;

select one of a plurality of power consumption profiles for the AV based on the determined operational mode; and

apply the selected one of the power consumption profiles to the AV;

wherein the plurality of operational modes includes:

a first operational mode in which the AV is determined to be parked;

a second operational mode in which the AV is determined to be undergoing testing in a controlled environment;

a third operational mode in which the AV is determined to be undergoing at least one of maintenance and inspection;

a fourth operational mode in which the AV is determined to be at least one of charging, making a delivery, and deadheading; and

a fifth operational mode in which the AV is determined to be providing a service to a passenger; and

wherein the applying the selected one of the power consumption profiles comprises:

adjusting a level of operation of a wireless connection between the AV and a remote system;

adjusting a level of operation of one or more cabin features of the AV; and

adjusting a level of operation of an automatic drive system computer (ADSC) of the AV.

20. The AV of claim 19 , wherein the applying the selected one of the power consumption profiles comprises adjusting operation of at least one of the AV's HVAC system, user interface, wireless back office connection, and Autonomous Drive System Computer (“ADSC”).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2020
From: BRANDON, JEFFREY; KAUFMAN, CHASE
To: GM CRUISE HOLDINGS LLC
Reel/Frame 051702/0382 →
Continuity (1)
Related Publication 20210240182A1 · Aug 5, 2021
Cited By (1)
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