IP Library › Granted Patent US 11,500,388
Granted Patent B2
US 11,500,388 · App. 16/533,177 · Granted Nov 15, 2022

System of configuring active lighting to indicate directionality of an autonomous vehicle

Inventors: Timothy David Kentley-Klay (Stanford, CA); Rachad Youssef Gamara (San Francisco, CA)
Assignee: Zoox, Inc.
G05D1/0214B60L3/0007B60L3/04B60L50/66B60N2/002B60Q1/26B60Q1/50B60Q1/525B60R21/01B60W10/04B60W10/18B60W10/20B60W10/30B60W30/08B60W30/09B60W30/095B60W30/0956B60W30/18G05D1/0088G05D1/0255G05D1/0257B60L2200/40B60R2021/01272B60W2400/00B60W2420/52B60W2420/54B60W2554/00B60W2554/80B60W2710/06B60W2710/08B60W2710/18B60W2710/20B60W2710/30Y02P90/60Y02T10/70
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Quick Facts
Patent No.
US 11,500,388
App. No.
16/533,177
Granted
Nov 15, 2022
Kind
B2
Abstract

Systems, apparatus and methods may be configured to implement actively-controlled light emission from a robotic vehicle. A light emitter(s) of the robotic vehicle may be configurable to indicate a direction of travel of the robotic vehicle and/or display information (e.g., a greeting, a notice, a message, a graphic, passenger/customer/client content, vehicle livery, customized livery) using one or more colors of emitted light (e.g., orange for a first direction and purple for a second direction), one or more sequences of emitted light (e.g., a moving image/graphic), or positions of light emitter(s) on the robotic vehicle (e.g., symmetrically positioned light emitters). The robotic vehicle may not have a front or a back (e.g., a trunk/a hood) and may be configured to travel bi-directionally, in a first direction or a second direction (e.g., opposite the first direction), with the direction of travel being indicated by one or more of the light emitters.

Claims (73)

1. A method comprising:

receiving sensor data from a sensor of a vehicle traversing an environment;

determining, based at least in part on the sensor data, a location of an object within the environment relative to the vehicle;

determining that the object is associated with a service;

determining, based at least in part on the location of the object relative to the vehicle and the determination that the object is associated with the service, a lighting pattern to emit; and

causing a light emitter, among multiple light emitters, on the vehicle visible to the object to emit light according to the lighting pattern.

2. The method as recited in claim 1 , further comprising:

detecting an occurrence of a triggering event,

wherein causing the light emitter to emit the lighting pattern is based at least in part on the occurrence of the triggering event.

3. The method as recited in claim 2 , wherein detecting the occurrence of the triggering event comprises at least one of:

determining that a location of the vehicle is within a first threshold distance to a location of a destination for the vehicle;

detecting the object based at least in part on the sensor data;

receiving a communication from a device associated with the object; or

determining that the object is within a second threshold distance to the vehicle, and

wherein the lighting pattern is based at least in part on the triggering event.

4. The method as recited in claim 1 , further comprising receiving light data representing the lighting pattern, wherein the lighting pattern is associated with at least one of a profile of the object or the service.

5. The method as recited in claim 1 , further comprising:

selecting, based at least in part on the location of the object relative to the vehicle, at least one speaker of the vehicle; and

causing the at least one speaker to output sound notifying the object about the vehicle.

6. The method as recited in claim 1 , further comprising selecting the light emitter, from among multiple light emitters, to emit the lighting pattern based on the light emitter being visible to the object.

7. The method as recited in claim 1 , wherein determining the lighting pattern to emit includes determining a color of light to be emitted by the light emitter.

8. A system comprising:

one or more sensors;

one or more light emitters;

one or more processors; and

one or more computer-readable media storing instructions that, when executed by the one or more processors, cause the one or more processors to perform operations comprising:

receiving sensor data generated by the one or more sensors;

determining, based at least in part on the sensor data, a location of an object within an environment relative to a vehicle;

determining that the location of the vehicle is within a first threshold distance of the object;

determining, based at least in part on the vehicle being within a first threshold distance of the object, a first lighting pattern;

causing the one or more light emitters to emit light according to the first lighting pattern;

determining that the location of the vehicle is within a second threshold distance of the object;

determining, based at least in part on the vehicle being within the second threshold distance, a second lighting pattern; and

causing the one or more light emitters to emit light according to the second lighting pattern.

9. The system as recited in claim 8 , the operations further comprising determining at least one of the first lighting pattern or the second lighting pattern based at least in part on the location of the object relative to the vehicle.

10. The system as recited in claim 8 , further comprising determining, based at least in part on the location of the object relative to the vehicle, the one or more light emitters to use to emit light based at least in part on the one or more light emitters being visible to the object.

11. The system as recited in claim 8 , the operations further comprising:

detecting an occurrence of a triggering event,

wherein causing the one or more light emitters to emit the first lighting pattern is based at least in part on the occurrence of the triggering event.

12. The system as recited in claim 11 , wherein detecting the occurrence of the triggering event comprises at least one of:

determining that the location of the vehicle is within a threshold distance to a location of a destination for the vehicle;

detecting the object based at least in part on the sensor data; or

receiving a communication from a device associated with the object.

13. The system as recited in claim 8 , the operations further comprising receiving light data representing at least one of the first lighting pattern or the second lighting pattern, wherein the at least one of the first lighting pattern or the second lighting pattern is associated with at least one of a profile of the object or a service provided by the vehicle.

14. The system as recited in claim 8 , the operations further comprising:

receiving service data representing a service being provided by the vehicle; and

determining that the object is associated with the service,

wherein causing the one or more light emitters to emit the lighting pattern is based at least in part on determining that the object is associated with the service.

15. The system as recited in claim 8 , further comprising one or more speakers, and wherein the operations further comprise:

determining, based at least in part on the location of the object relative to the vehicle, at least one speaker of the one or more speakers; and

causing the at least one speaker to output sound notifying the object about the vehicle.

16. One or more non-transitory computer-readable media storing instructions that, when executed by one or more processors, cause one or more computing devices to perform operations comprising:

receiving sensor data generated by at least one sensor;

determining, based at least in part on the sensor data, a first location of an object within an environment relative to the at least one sensor;

determining, based at least in part on the first location of the object, a first lighting pattern;

causing a light emitter, among multiple light emitters, on a vehicle visible to the object to emit light according to the first lighting pattern;

determining a second location of the object within the environment relative to the vehicle;

determining, based at least in part on the second location of the object relative to the vehicle, a second lighting pattern; and

causing the light emitter or another light emitter, among multiple light emitters, on the vehicle visible to the object to emit light according to the second lighting pattern.

17. The one or more non-transitory computer-readable media as recited in claim 16 , the operations further comprising determining, based at least in part on the first location of the object, the light emitter that is visible to the object.

18. The one or more non-transitory computer-readable media as recited in claim 16 , the operations further comprising:

detecting an occurrence of a triggering event,

wherein causing the light emitter to emit the first lighting pattern is based at least in part on the occurrence of the triggering event.

19. The one or more non-transitory computer-readable media as recited in claim 18 ,

wherein detecting the occurrence of the triggering event comprises at least one of:

determining that a location of the vehicle is within a threshold distance to a location of a destination for the vehicle;

detecting the object based at least in part on the sensor data;

receiving a communication from a device associated with the object; or

determining that the object is within a threshold distance to the vehicle.

20. The one or more non-transitory computer-readable media as recited in claim 16 , the operations further comprising:

receiving service data representing a service being provided by the vehicle; and

determining that the object is associated with the service,

wherein causing the light emitter to emit the first lighting pattern is based at least in part on determining that the object is associated with the service.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2020
From: KENTLEY-KLAY, TIMOTHY DAVID; GAMARA, RACHAD YOUSSEF
To: ZOOX, INC.
Reel/Frame 052641/0588 →
Continuity (3)
Continuation 15613798 · Jun 5, 2017
Continuation 14756994 · Nov 4, 2015
Related Publication 20190361453A1 · Nov 28, 2019