IP Library › Granted Patent US 8,382,297
Granted Patent B2
US 8,382,297 · App. 13/370,032 · Granted Feb 26, 2013

Method, system and apparatus for projecting visible and non-visible images

Inventors: Stuart Nicholson (Waterloo, CA); Thomas Patrick Pawelko (Cambridge, CA); Lawrence Stewart Paul (Encino, CA)
Assignee: Christie Digital Systems, Inc.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,382,297
App. No.
13/370,032
Granted
Feb 26, 2013
Kind
B2
Abstract

A method, apparatus and system for combining non-visible data and visible data for a projector enabled to project visible images and non-visible images are provided. Visible bits representative of the visible images to be projected by the projector in a visible light spectrum are received; non-visible bits representative of the non-visible images to be projected by the projector in a non-visible light spectrum are received; a portion of the visible bits are replaced with at least a portion of the non-visible bits in video data such that the visible images and the non-visible images can be co-projected by the projector upon processing the video data.

Claims (30)

1. A method for combining non-visible data and visible data for a projector enabled to project visible images and non-visible images, the method comprising,

receiving, at an image generator, visible bits representative of said visible images to be projected by the projector in a visible light spectrum said visible bits comprising red, green and blue color bits;

receiving, at said image generator non-visible bits representative of said non-visible images to be projected by the projector in a non-visible light spectrum; and,

replacing, at said image generator, a portion of said visible bits with at least a portion of said non-visible bits in video data comprising frames, each said frame comprising said red, green and blue color bits, by alternating replacing one of said red, green and blue color bits with most significant non-visible bits and least significant non-visible bits in successive frames of said video data, such that said visible images and said non-visible images can be co-projected by the projector upon processing said video data.

2. The method of claim 1 , wherein alternating replacing one of said red, green and blue color bits with said most significant non-visible bits and said least significant non-visible bits in said successive frames of said video data comprises replacing a portion of said blue color bits with a portion of said non-visible bits.

3. The method of claim 1 , wherein alternating replacing one of said red, green and blue color bits with most significant non-visible bits and said least significant non-visible bits in successive frames of said video data comprises replacing a portion of one of said red, green and blue color bits with said most significant non-visible bits and said least significant non-visible bits in said successive frames of said video data.

4. The method of claim 1 , wherein alternating replacing one of said red, green and blue color bits with said most significant non-visible bits and said least significant non-visible bits comprises replacing one of said red, green and blue color bits with said non-visible bits in every second frame of said video data.

5. The method of claim 4 , wherein replacing a portion of said visible bits with at least a portion of said non-visible bits in said video data comprises alternating between replacing a first one of said red, green and blue bits with said non-visible bits and replacing a second one of said red, green and blue bits with said non-visible bits in successive frames of said video data.

6. The method of claim 5 , further comprising replacing a third one of said red, green and blue bits with said non-visible bits in further successive frames of said video data.

7. A method for combining non-visible data and visible data for a projector enabled to project visible images and non-visible images, the method comprising,

receiving, at an image generator, visible bits representative of said visible images to be projected by the projector in a visible light spectrum, said visible bits comprising red, green and blue color bits;

receiving, at said image generator non-visible bits representative of said non-visible images to be projected by the projector in a non-visible light spectrum; and,

replacing, at said image generator, a portion of said visible bits with at least a portion of said non-visible bits in video data comprising frames, each said frame comprising said red, green and blue color bits, by replacing a first one of said red, green and blue bits with a first portion of said non-visible bits and replacing a second one of said red, green and blue bits with a second portion of said non-visible bits in successive frames of said video data, said first portion being less significant than said second portion, such that said visible images and said non-visible images can be co-projected by the projector upon processing said video data.

8. The method of claim 7 , further comprising replacing a third one of said red, green and blue bits with one of said second portion and a third portion of said non-visible bits in said successive frames of said video data, said second portion being less significant than said third portion.

9. A method for combining non-visible data and visible data for a projector enabled to project visible images and non-visible images, the method comprising,

receiving, at an image generator, visible bits representative of said visible images to be projected by the projector in a visible light spectrum, said visible bits comprising red, green and blue color bits;

receiving, at said image generator non-visible bits representative of said non-visible images to be projected by the projector in a non-visible light spectrum; and,

replacing, at said image generator, a portion of said visible bits with at least a portion of said non-visible bits in video data comprising frames, each said frame comprising said red, green and blue color bits, by replacing two of said red, green and blue color bits with said non-visible bits in each frame, such that remaining visible bits comprise monochrome images, such that said visible images and said non-visible images can be co-projected by the projector upon processing said video data.

10. The method of claim 9 , wherein replacing two of said red, green and blue color bits with said non-visible bits comprising replacing a first one of said red, green and blue color bits with most significant non-visible bits and replacing a second one of said red, green and blue color bits with least significant non-visible bits.

11. The method of claim 9 , wherein said remaining visible bits comprise at least one of a combination of red, green and blue data transformed into monochrome data according to a pre-determined algorithm, and originally generated monochrome data.

12. An image generator for combining non-visible data and visible data for a projector enabled to project visible images and non-visible images, the image generator comprising,

an interface enabled to transmit video data to said projector; and

a processing unit enabled to:

receive visible bits representative of said visible images to be projected by the projector in a visible light spectrum said visible bits comprising red, green and blue color bits;

receive non-visible bits representative of said non-visible images to be projected by the projector in a non-visible light spectrum; and,

replace a portion of said visible bits with at least a portion of said non-visible bits in said video data, said video data comprising frames, each said frame comprising said red green and blue color bits, by one or more of:

alternating replacing one of said red, green and blue color bits with most significant non-visible bits and least significant non-visible bits in successive frames of said video data;

replacing a first one of said red, green and blue bits with a first portion of said non-visible bits and replacing a second one of said red, green and blue bits with a second portion of said non-visible bits in successive frames of said video data, said first portion being less significant than said second portion; and

replacing two of said red, green and blue color bits with said non-visible bits in each frame, such that remaining visible bits comprise monochrome images,

such that said visible images and said non-visible images can be co-projected by the projector upon processing said video data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2016
From: CHRISTIE DIGITAL SYSTEMS USA, INC.
To: ROCKWELL COLLINS, INC.
Reel/Frame 037881/0568 →
Continuity (2)
Division 12289701 · Oct 31, 2008
Related Publication 20120162544A1 · Jun 28, 2012