IP Library Granted Patent US 11,900,672
Granted Patent B2
US 11,900,672 · App. 16/389,779 · Granted Feb 13, 2024

Integrated internal and external camera system in vehicles

Inventors: Rocky Chau-Hsiung Lin (Cupertino, CA); Thomas Yamasaki (Anaheim Hills, CA); Koichiro Kanda (San Jose, CA); Diego Rodriguez Risco (Campbell, CA); Alexander Joseph Ryan (Mountain View, CA); Samah Najeeb (Menlo Park, CA); Samir El Aouar (San Jose, CA)
Assignee: ALPINE ELECTRONICS OF SILICON VALLEY, INC.
G06V20/20G06V20/56G06V20/59G06V40/20
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Quick Facts
Patent No.
US 11,900,672
App. No.
16/389,779
Granted
Feb 13, 2024
Kind
B2
Abstract

Devices, systems and processes for an integrated internal and external camera system that enhances the passenger experience in vehicles are described. One example method for enhancing a passenger experiences includes capturing a first set of images of an area around the vehicle using an external camera system, capturing a second set of images of one or more passengers inside the vehicle using an internal camera system, recognizing at least one gesture made by the one or more passengers based on the second set of images, identifying an object or a location external to the vehicle based on the first set of images and the at least one gesture, and displaying information related to the object or the location to the one or more passengers.

Claims (62)

1. A camera system for use with a vehicle, comprising:

a processor;

an external camera system coupled to the processor, wherein the external camera system is configured to capture a first set of images of an area around the vehicle;

an internal camera system coupled to the processor, wherein the internal camera system is configured to capture a second set of images of one or more passengers inside the vehicle; and

a display system coupled to the processor,

wherein the processor is configured to:

recognize, based on the second set of images, at least one gesture made by the one or more passengers,

determine, based on the second set of images, a pose of at least one passenger of the one or more passengers,

determine, based on the second set of images and the determined pose of the at least one passenger of the one or more passengers, a field of view of the at least one passenger of the one or more passengers,

modify the first set of images based on the determined field of view of the at least one passenger of the one or more passengers to correspond to the actual field of view of the one or more passengers, wherein the processor is configured to modify the first set of images at least by overlaying adjacent images of the first set of images, wherein the modified first set of images captures a portion of the area around the vehicle that the at least one passenger was viewing at the time that the at least one passenger made the at least one gesture,

identify, based on the modified first set of images and the at least one gesture, an object or location located outside the vehicle that the user gestured at,

receive a point-of-interest stream,

display graphical representations of a plurality of points-of-interest from the point-of-interest stream in an augmented reality format on the window surface before the processor recognizes the at least one gesture, and

display, using the display system, information from the point-of-interest stream related to the object or location to the one or more passengers on a window surface of the vehicle,

wherein the identified object or location located outside the vehicle corresponds to one of the plurality of points-of-interest, and

wherein the display system displays the information related to the object or location in an augmented reality format on the window surface.

2. The system of claim 1 ,

wherein the processor is further configured to determine a location of the vehicle, and

wherein the processor is configured to identify the object or location located outside the vehicle further based on the location of the vehicle.

3. The system of claim 1 ,

wherein the information related to the object or location is selected from a point-of-interest dataset.

4. The system of claim 3 ,

wherein the point-of-interest dataset is generated based on a location of the vehicle.

5. The system of claim 4 ,

wherein the point-of-interest dataset is generated further based on a direction of travel of the vehicle.

6. The system of claim 1 ,

wherein the at least one gesture includes a pointing gesture.

7. The system of claim 1 ,

wherein the processor is configured to determine the field of view of the at least one passenger of the one or more passengers additionally based on relative locations of one or more windows of the vehicle and one or more cameras of the internal camera system.

8. The system of claim 1 ,

wherein the processor is configured to modify the first set of images based on the determined field of view of the at least one passenger of the one or more passengers at least by cropping, rotating, and resizing at least one image of the first set of images, and

wherein the external camera system is capable of capturing images 360 degrees around the vehicle.

9. A method for use with a vehicle, comprising:

capturing a first set of images of an area around the vehicle;

capturing a second set of images of one or more passengers inside the vehicle;

recognizing, based on the second set of images, at least one gesture made by the one or more passengers;

determining, based on the second set of images, a pose of at least one passenger of the one or more passengers;

determining, based on the second set of images and the determined pose of the at least one passenger of the one or more passengers, a field of view of the at least one passenger of the one or more passengers;

modifying the first set of images based on the determined field of view of the at least one passenger of the one or more passengers to correspond to the actual field of view of the one or more passengers, wherein modifying the first set of images includes at least overlaying adjacent images of the first set of images, wherein the modified first set of images captures a portion of the area around the vehicle that the at least one passenger was viewing at the time that the at least one passenger made the at least one gesture;

identifying, based on the modified first set of images and the at least one gesture, an object or location located outside the vehicle that the user gestured at;

displaying information from the point-of-interest stream related to the object or location to the one or more passengers on a window surface of the vehicle,

receiving a point-of-interest stream; and

displaying graphical representations of a plurality of points-of-interest from the point-of-interest stream in an augmented reality format on the window surface before the recognizing the at least one gesture,

wherein the identified object or location located outside the vehicle corresponds to one of the plurality of points-of-interest, and

wherein the displaying the information related to the object or location is performed so that the information related to the object or location is displayed in an augmented reality format on the window surface.

10. The method of claim 9 , further comprising:

determining a location of the vehicle,

wherein the identifying the object or location located outside the vehicle is further based on the location of the vehicle.

11. The method of claim 9 , further comprising:

wherein the information related to the object or location is selected from a point-of-interest dataset.

12. The method of claim 11 ,

wherein the point-of-interest dataset is generated based on a location of the vehicle.

13. The method of claim 12 ,

wherein the point-of-interest dataset is generated further based on a direction of travel of the vehicle.

14. The method of claim 9 ,

wherein the at least one gesture includes a pointing gesture.

15. The method of claim 9 ,

wherein determining the field of view of the at least one passenger of the one or more passengers is performed additionally based on relative locations of one or more windows of the vehicle and one or more cameras of the internal camera system.

16. The method of claim 9 ,

wherein modifying the first set of images based on the determined field of view of the at least one passenger of the one or more passengers is performed at least by cropping, rotating and resizing at least one image of the first set of images,

wherein the capturing the first set of images of an area around the vehicle is performed by an external camera system, and

wherein the external camera system is capable of capturing images 360 degrees around the vehicle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2024
From: ALPINE ELECTRONICS OF SILICON VALLEY, INC.
To: REVEAL INNOVATIONS, LLC
Reel/Frame 069042/0477 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2019
From: LIN, ROCKY CHAU-HSIUNG; YAMASAKI, THOMAS; KANDA, KOICHIRO; RISCO, DIEGO RODRIGUEZ; RYAN, ALEXANDER JOSEPH; NAJEEB, SAMAH; EL AOUAR, SAMIR
To: ALPINE ELECTRONICS OF SILICON VALLEY, INC.
Reel/Frame 049541/0376 →
Cited By (1)
US 12,536,808