IP Library Granted Patent US 8,233,538
Granted Patent B2
US 8,233,538 · App. 12/058,682 · Granted Jul 31, 2012

Methods and systems for image intra-prediction mode management

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Quick Facts
Patent No.
US 8,233,538
App. No.
12/058,682
Granted
Jul 31, 2012
Kind
B2
Abstract

Embodiments of the present invention relate to methods and systems for ordering, communicating and applying pixel intra-prediction modes.

Claims (19)

1. An image encoding system for encoding a digital image comprising:

a) means for encoding each of blocks into which an image is divided;

b) intra-prediction means for predicting values of pixels located along a specified direction in a target block to be coded by using a same prediction value; and

c) prediction mode estimating means for estimating a prediction mode for the target block; wherein

d) the intra-prediction means uses a prediction value being a weighted average of plural pixels located adjacent to the target block as a prediction value of the target block,

e) the prediction mode includes a Diagonal Down/Left prediction mode using the specified direction being diagonally downward to the left at approximately a 45 degree angle, a Diagonal Down/_Right prediction mode using the specified direction being diagonally downward to the right at approximately a 45 degree angle and an intermediate angle prediction mode using the specified direction being diagonally at approximately a 22.5 degree angle or a 67.5 degree angle,

f) the prediction modes are numbered with increasingly larger numbers, in order of the Diagonal Down/Left prediction mode, the Diagonal Down/Right prediction mode and the intermediate angle prediction mode, and the prediction mode estimating means determines a prediction mode to have the lower mode number among the prediction mode of a first block located adjacent to and above the target block and the prediction mode of a second block located adjacent to the left side of the target block as the prediction mode for the target block.

2. An image decoding system for decoding a digital image comprising:

a) means for decoding each of blocks into which an image is divided;

b) intra-prediction means for predicting values of pixels located along a specified direction in a target block to be decoded by using a same prediction value; and

c) prediction mode estimating means for estimating a prediction mode for the target block; wherein the intra-prediction means uses a prediction value being a weighted average of plural pixels located adjacent to the target block as a prediction value of the target block,

d) the prediction mode includes a Diagonal Down/Left prediction mode using the specified direction being diagonally downward to the left at approximately a 45 degree angle, a Diagonal Down/Right prediction mode using the specified direction being diagonally downward to the right at approximately a 45 degree angle and an intermediate angle prediction mode using the specified direction being diagonally at approximately a 22.5 degree angle or a 67.5 degree angle,

e) the prediction modes are numbered with increasingly larger numbers, in order of the Diagonal Down/Left prediction mode, the Diagonal Down/Right prediction mode and the intermediate angle prediction mode, and the prediction mode estimating means determines a prediction mode to have the lower mode number among the prediction mode of a first block located adjacent to and above the target block and the prediction mode of a second block located adjacent to the left side of the target block as the prediction mode for the target block.

3. A prediction method for predicting a pixel value of each of blocks into which an image is divided in an image processing device for encoding or decoding a digital image comprising;

a) an intra-prediction step of predicting values of pixels located along a specified direction in a target block to be predicted by using a same prediction value; and

b) a prediction mode estimating step of estimating a prediction mode for the target block; wherein

c) the intra-prediction step uses a prediction value being a weighted average of plural pixels located adjacent to the target block as a prediction value of the target block,

d) the prediction mode includes a Diagonal Down/Left prediction mode using the specified direction being diagonally downward to the left at approximately a 45 degree angle, a Diagonal Down/Right prediction mode using the specified direction being diagonally downward to the right at approximately a 45 degree angle and an intermediate angle prediction mode using the specified direction being diagonally at approximately a 22.5 degree angle or a 67.5 degree angle,

e) the prediction modes are numbered with increasingly larger numbers, in order of the Diagonal Down/Left prediction mode, the Diagonal Down/Right prediction mode and the intermediate angle prediction mode, and the prediction mode estimating step determines a prediction mode to have the lower mode number among the prediction mode of a first block located adjacent to and above the target block and the prediction mode of a second block located adjacent to the left side of the target block as the prediction mode for the target block.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2015
From: SHARP KABUSHIKI KAISHA
To: DOLBY LABORATORIES LICENSING CORPORATION
Reel/Frame 036724/0111 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2010
From: SHARP LABORATORIES OF AMERICA INC.
To: SHARP KABUSHIKI KAISHA
Reel/Frame 023790/0140 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2008
From: SUN, SHIJUN; KEROFSKY, LOUIS J.
To: SHARP LABORATORIES OF AMERICA, INC.
Reel/Frame 020774/0557 →