IP Library Patent Application 16722623
Patent Application
App. No. 16/722,623

Creating Aisle Access for Autonomous Vehicle Parking

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Quick Facts
Patent No.
US None
App. No.
16/722,623
Abstract

A method includes, by a central computing device, receiving instructions to provide access to a first autonomous vehicle of multiple autonomous vehicles in an array, wherein the first autonomous vehicle is blocked by one or more blocking autonomous vehicles of the multiple autonomous vehicles in the array, and causing coordinated movements to be performed by one or more blocking autonomous vehicles to create a gap in the array, wherein the gap provides a temporary access aisle to provide access to the first autonomous vehicle.

Claims (38)

1 . A method comprising, by a central computing device:

receiving instructions to provide access to a first autonomous vehicle of a plurality of autonomous vehicles in an array, wherein the first autonomous vehicle is blocked by one or more blocking autonomous vehicles of the plurality of autonomous vehicles in the array; and

causing coordinated movements to be performed by one or more blocking autonomous vehicles to create a gap in the array, wherein the gap provides a temporary access aisle to provide access to the first autonomous vehicle.

2 . The method of claim 1 , wherein the gap is created in a portion of the array such that one or more of the blocking autonomous vehicles are on one side of the temporary access aisle and one or more of the other blocking autonomous vehicles are on another side of the temporary access aisle.

3 . The method of claim 1 , wherein the gap is created at one end of the array such that all of the blocking autonomous vehicles are on a same side of the temporary access aisle.

4 . The method of claim 1 , wherein the plurality of autonomous vehicles in the array are arranged in a plurality of columns, and wherein the temporary access aisle is:

perpendicular to one or more of the columns; or

diagonal with respect to one or more of the columns.

5 . The method of claim 1 , further comprising:

causing the first autonomous vehicle to move through the temporary access aisle to a location that allows the first autonomous vehicle to be accessible.

6 . The method of claim 5 , further comprising:

causing, after determining that access to the first autonomous vehicle has been provided, the first autonomous vehicle to move back to its starting location in the array.

7 . The method of claim 5 , wherein the coordinated movements include, after determining that the first autonomous vehicle has moved through the temporary access aisle, causing one of the plurality of autonomous vehicles in the array to move to a starting location of the first autonomous vehicle.

8 . The method of claim 1 , wherein the coordinated movements include, after determining that access to the first autonomous vehicle has been provided, removing the temporary access aisle by moving at least one of the blocking autonomous vehicles into the gap in the array.

9 . One or more computer-readable non-transitory storage media embodying software that is operable when executed by a central computing device to:

receive instructions to provide access to a first autonomous vehicle of a plurality of autonomous vehicles in an array, wherein the first autonomous vehicle is blocked by one or more blocking autonomous vehicles of the plurality of autonomous vehicles in the array; and

cause coordinated movements to be performed by one or more blocking autonomous vehicles to create a gap in the array, wherein the gap provides a temporary access aisle to provide access to the first autonomous vehicle.

10 . The one or more computer-readable non-transitory storage media of claim 9 , wherein the gap is created in a portion of the array such that one or more of the blocking autonomous vehicles are on one side of the temporary access aisle and one or more of the other blocking autonomous vehicles are on another side of the temporary access aisle.

11 . The one or more computer-readable non-transitory storage media of claim 9 , wherein the gap is created at one end of the array such that all of the blocking autonomous vehicles are on a same side of the temporary access aisle.

12 . The one or more computer-readable non-transitory storage media of claim 9 , wherein the plurality of autonomous vehicles in the array are arranged in a plurality of columns, and wherein the temporary access aisle is:

perpendicular to one or more of the columns; or

diagonal with respect to one or more of the columns.

13 . The one or more computer-readable non-transitory storage media of claim 9 , wherein the software is further operable when executed by the central computing device to:

cause the first autonomous vehicle to move through the temporary access aisle to a location that allows the first autonomous vehicle to be accessible.

14 . The one or more computer-readable non-transitory storage media of claim 13 , wherein the software is further operable when executed by the central computing device to:

cause, after determining that access to the first autonomous vehicle has been provided, the first autonomous vehicle to move back to its starting location in the array.

15 . A system comprising: one or more processors of a central computing device and one or more computer-readable non-transitory storage media coupled to one or more of the processors, the one or more computer-readable non-transitory storage media comprising instructions operable when executed by one or more of the processors to cause the system to:

receive instructions to provide access to a first autonomous vehicle of a plurality of autonomous vehicles in an array, wherein the first autonomous vehicle is blocked by one or more blocking autonomous vehicles of the plurality of autonomous vehicles in the array; and

cause coordinated movements to be performed by one or more blocking autonomous vehicles to create a gap in the array, wherein the gap provides a temporary access aisle to provide access to the first autonomous vehicle.

16 . The system of claim 15 , wherein the gap is created in a portion of the array such that one or more of the blocking autonomous vehicles are on one side of the temporary access aisle and one or more of the other blocking autonomous vehicles are on another side of the temporary access aisle.

17 . The system of claim 15 , wherein the gap is created at one end of the array such that all of the blocking autonomous vehicles are on a same side of the temporary access aisle.

18 . The system of claim 15 , wherein the plurality of autonomous vehicles in the array are arranged in a plurality of columns, and wherein the temporary access aisle is:

perpendicular to one or more of the columns; or

diagonal with respect to one or more of the columns.

19 . The system of claim 15 , wherein the processors are further operable when executing the instructions to:

cause the first autonomous vehicle to move through the temporary access aisle to a location that allows the first autonomous vehicle to be accessible.

20 . The system of claim 19 , wherein the processors are further operable when executing the instructions to:

cause, after determining that access to the first autonomous vehicle has been provided, the first autonomous vehicle to move back to its starting location in the array.

Assignments (1)
SECURITY INTEREST Recorded Nov 3, 2022
From: LYFT, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 061880/0237 →