IP Library Granted Patent US 7,492,822
Granted Patent B2
US 7,492,822 · App. 10/502,630 · Granted Feb 17, 2009

Compression techniques

Assignee: Snell & Wilcox Limited
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Quick Facts
Patent No.
US 7,492,822
App. No.
10/502,630
Granted
Feb 17, 2009
Kind
B2
Abstract

In a video encoder a prediction signal at a bit resolution of P is subtracted from an input signal received at a bit resolution of P+Δ, where P is typically 8 bits, and P+Δ, 10 bits. A transform is then performed on the result, the output of which transform being at a bit resolution of at least P+Δ. The transformed signal is quantised, and the quantised signal used to form the prediction signal. The quantised signal is then coded for downstream delivery. At a decoder, the process is inverted, preserving the extra Δ bits input to the encoder.

Claims (30)

1. A method of video signal compression comprising the steps of:

receiving a video signal input at a bit resolution of P+Δ, where P and Δ are positive integers;

subtracting a prediction signal at a bit resolution of P;

performing a transform on the result, the input to which transform being at a bit resolution of at least P+Δ plus any sign bit;

quantising the transformed signal to produce a quantised signal;

utilizing the quantised signal to form the said prediction signal; and

coding the quantised signal for delivery.

2. A method of video signal compression comprising the steps of:

receiving a video signal input at a bit resolution of P+Δ, where P and Δ are positive integers;

subtracting a prediction signal at a bit resolution of P;

performing a transform on the result, the output of which transform being at a bit resolution of at least P+Δ;

quantising the transformed signal to produce a quantised signal;

utilizing the quantised signal to form the said prediction signal; and

coding the quantised signal for delivery,

further comprising performing the transform at a bit resolution of at least Q+Δ, where Q is the minimum number of bits required in the transform domain to represent a video signal at bit resolution P, and quantising the transformed signal to produce a quantised signal of bit resolution Q.

3. A method of video signal decompression, comprising the steps of:

receiving a coded signal; decoding the coded signal;

inverse quantising the decoded signal;

performing an inverse transform on the inverse quantised signal, a first output of the inverse transform being provided at a first bit resolution and a second output of the inverse transform being provided at a second bit resolution greater than said first bit resolution;

using the first output of the inverse transform to form a prediction signal at a bit resolution of P; and

combining the second output and the prediction signal to form a video signal output at a bit resolution of P+Δ, where P and Δ are positive integers.

4. A method according to claim 1 , wherein bit resolution P is 8 bit resolution, and resolution P+Δ is 10 bit resolution.

5. A system for video signal compression and decompression comprising:

a compressor for receiving a video signal input at a bit resolution of P+Δ, where P and Δ are positive integers, subtracting a prediction signal at a bit resolution of P, performing a transform on the result, the output of which transform being at a bit resolution of at least P+Δ, quantising the transformed signal to produce a quantised signal, utilizing the quantized signal to form the said prediction signal, and coding the quantised signal for delivery;

a channel for delivering the coded signal; and

a decompressor for receiving the coded signal, decoding the coded signal, inverse quantising the decoded signal, performing the inverse of said transform on the inverse-quantised signal, a first output of the inverse transform being provided at a bit resolution of P+Δ, and a second output of the inverse transform being provided at a bit resolution of P, the output of the inverse transform additionally including sign bits where appropriate, utilizing the second output of the inverse transform to form a prediction signal at a bit resolution of P and combining the prediction signal with the first output of the inverse transform to form a video signal of bit resolution P+Δ.

6. A system according to claim 5 , wherein the compressor is adapted to perform the transform at a bit resolution of at least Q+Δ, where Q is the minimum number of bits required in the transform domain to represent a video signal at bit resolution P, and to quantise the transformed signal to produce a quantised signal of bit resolution Q.

7. A system according to claim 6 , wherein the decompressor is adapted to inverse quantise the decoded signal to produce an inverse-quantised signal at a bit resolution of at least Q+Δ.

8. A system according to claim 5 , wherein bit resolution P is 8 bit resolution, and resolution P+Δ is 10 bit resolution.

9. A method according to claim 3 , wherein bit resolution P is 8 bit resolution, and resolution P+Δ is 10 bit resolution.

Assignments (3)
MERGER Recorded Jan 14, 2016
From: AMSTR. INVESTMENTS 6 K.G., LLC
To: OL SECURITY LIMITED LIABILITY COMPANY
Reel/Frame 037494/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2009
From: SNELL & WILCOX LIMITED
To: AMSTR. INVESTMENTS 6 K.G., LLC
Reel/Frame 022408/0655 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2005
From: COTTON, ANDREW DAVID RAINE; KNEE, MICHAEL JAMES
To: SNELL & WILCOX LIMITED
Reel/Frame 016125/0274 →
Priority Claims (1)
GB 0201747.3 · Jan 25, 2002 · national
Continuity (1)
Related Publication 20050111544A1 · May 26, 2005