IP Library › Granted Patent US 9,687,698
Granted Patent B2
US 9,687,698 · App. 14/826,413 · Granted Jun 27, 2017

Throwable cameras and network for operating the same

Inventor: Steven J. Hollinger (Boston, MA)
A63B43/00H04N5/2251H04N5/2252H04N5/2253H04N5/2258H04N5/2259H04N5/232H04N5/23203H04N5/23229H04N5/23238H04N7/181
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Quick Facts
Patent No.
US 9,687,698
App. No.
14/826,413
Granted
Jun 27, 2017
Kind
B2
Abstract

A network of throwable cameras is disclosed. The network can include a client device capable of receiving images and sensor data from throwable cameras on the network. The client device can process images captured by multiple cameras on the network into panoramic images and video. A user request processor can receive requests from a user and can present processed images and video to the user.

Claims (41)

1. An image capture system comprising:

a first housing suitable for being thrown into an airborne trajectory comprising a first camera, a first orientation sensor that determines an orientation of the first housing, and a first network interface for wirelessly transmitting a first captured image and first orientation data, wherein the first orientation data indicates the orientation of the first housing at substantially the same time as the capture of the first image;

a second housing suitable for being thrown into an airborne trajectory comprising a second camera, a second orientation sensor that determines an orientation of the second housing, and a second network interface for wirelessly transmitting a second captured image and second orientation data, wherein the second orientation data indicates the orientation of the second housing at substantially the same time as the capture of the second image;

a client device comprising a memory, a third network interface which is wirelessly connected to the first network interface and the second network interface, and an image processor, wherein the image processor rotates the first captured image in response to the first orientation data, and stitches the first captured image and the second captured image together to obtain a substantially seamless panoramic image.

2. The image capture system of claim 1 wherein the client device comprises a third camera and wherein the image processor stitches an image captured by the third camera and the substantially seamless panoramic image together to obtain a larger substantially seamless panoramic image.

3. The image capture system of claim 1 further comprising a user request processor, wherein:

the user request processor comprises an input device and a display;

the image processor stores the substantially seamless panoramic image in the memory; and

the user request processor receives a request from a user through the input device, and, in response to the request, displays at least a portion of the substantially seamless panoramic image.

4. The image capture system of claim 3 wherein the image processor and the user request processor are the same processor.

5. An image capture system comprising:

a first housing suitable for being thrown into an airborne trajectory comprising a first camera, a first position sensor that determines a position of the first housing along its trajectory, and a first network interface for wirelessly transmitting a first captured image, and first position data, wherein the first position data indicates the position of the first housing at substantially the same time as the capture of the first image;

a second housing suitable for being thrown into an airborne trajectory comprising a second camera, a second position sensor that determines a position of the second housing along its trajectory, and a second network interface for wirelessly transmitting a second captured image, and second position data, wherein the second position data indicates the position of the second housing at substantially the same time as the capture of the second image; and

a client device comprising a third network interface and an image processor, wherein the third network interface is wirelessly connected to the first network interface and the second network interface, and the client device receives the first captured image, the first position data, the second captured image and the second position data.

6. The image capture system of claim 5 wherein the first position sensor comprises at least one of a GPS sensor, a time reference, an accelerometer, a motion sensor, an altitude sensor, an impact sensor, a gyroscope and a light-sensitive sensor such as a photocell.

7. The image capture system of claim 5 wherein the image processor compiles the first captured image and the second captured image into a video.

8. The image capture system of claim 7 wherein the image processor sequences the order of the first captured image and the second captured image in the video in response to the first position data and the second position data.

9. The image capture system of claim 5 wherein the image processor stitches the first captured image and the second captured image together in response to the first position data and the second position data to obtain a substantially seamless panoramic image.

10. The image capture system of claim 9 further comprising a user request processor, wherein:

the user request processor comprises an input device and a display;

the image processor stores the substantially seamless panoramic image in the memory; and

the user request processor receives a request from a user through the input device, and, in response to the request, displays at least a portion of the substantially seamless panoramic image.

11. The image capture system of claim 10 wherein the image processor and the user request processor are the same processor.

12. The image capture system of claim 5 wherein:

the first housing comprises an orientation sensor positioned in the housing that determines the orientation of the housing with respect to ground, the first network interface transmits orientation data indicating the orientation of the housing, and the image processor stitches the first captured image and the second captured image together in response to the orientation data to obtain a substantially seamless panoramic image.

13. The image capture system of claim 5 wherein:

the first housing comprises an orientation sensor positioned in the housing that determines the orientation of the housing with respect to ground, the first network interface transmits orientation data indicating the orientation of the housing, and the image processor rotates the first captured image in response to the orientation data.

14. An image capture system comprising:

a first housing suitable for being thrown into an airborne trajectory comprising a first camera, a first position sensor that determines a position of the first housing with respect to ground, and a first network interface for wirelessly transmitting a first captured image, and first position data, wherein the first position data indicates the position of the first housing at substantially the same time as the capture of the first image;

a second housing suitable for being thrown into an airborne trajectory comprising a second camera, a second position sensor that determines a position of the second housing with respect to ground, and a second network interface for wirelessly transmitting a second captured image, and second position data, wherein the second position data indicates the position of the second housing at substantially the same time as the capture of the second image; and

a client device comprising a memory, a third network interface which is wirelessly connected to the first network interface and the second network interface, and an image processor, wherein the image processor scales the first captured image in response to the first position data, and stitches the first captured image and the second captured image together to obtain a substantially seamless panoramic image.

15. The image capture system of claim 14 wherein the first position sensor comprises at least one of a GPS sensor, a time reference, an accelerometer, a motion sensor, an altitude sensor, an impact sensor, a gyroscope and a light-sensitive sensor such as a photocell.

16. The image capture system of claim 14 wherein:

the first housing comprises an orientation sensor positioned in the housing that determines the orientation of the housing with respect to ground, the first network interface transmits orientation data indicating the orientation of the housing, and the image processor rotates the first captured image in response to the orientation data.

17. The image capture system of claim 14 wherein:

the first housing comprises an orientation sensor positioned in the housing that determines the orientation of the housing with respect to ground, the first network interface transmits orientation data indicating the orientation of the housing, and the image processor rotates the substantially seamless panoramic image in response to the orientation data.

18. The image capture system of claim 14 further comprising a user request processor, wherein:

the user request processor comprises an input device and a display;

the image processor stores the substantially seamless panoramic image in the memory; and

the user request processor receives a request from a user through the input device, and, in response to the request, displays at least a portion of the substantially seamless panoramic image.

19. The image capture system of claim 18 wherein the image processor and the user request processor are the same processor.

Continuity (8)
Continuation 13798918 · Mar 13, 2013
Continuation In Part 13492616 · Jun 8, 2012
Continuation In Part 13492616
Continuation 12772198 · May 1, 2010
Provisional Application 61174994 · May 2, 2009
Provisional Application 61177769 · May 13, 2009
Provisional Application 61226618 · Jul 17, 2009
Related Publication 20150350543A1 · Dec 3, 2015