IP Library › Granted Patent US 8,145,002
Granted Patent B2
US 8,145,002 · App. 11/928,486 · Granted Mar 27, 2012

Image encoding device and image encoding method

Assignee: Mitsubishi Electric Corporation
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Quick Facts
Patent No.
US 8,145,002
App. No.
11/928,486
Granted
Mar 27, 2012
Kind
B2
Abstract

An encoding device includes a color component separating unit for separating an input bit stream for the respective color components, a block dividing unit for dividing an input color component signal into blocks to generate a signal of an encoding unit area, a predicted image generating unit for generating a predicted image for the signal, a determining unit for determining a prediction mode used for encoding according to a prediction efficiency of the predicted image, a prediction error encoding unit for encoding a difference between the predicted image corresponding to the prediction mode determined by the determining unit and the input color component signal, and an encoding unit for variable length-coding the prediction mode, an output from the prediction error encoding unit, and a color component identification flag indicating the color component to which the input bit stream belongs as a result of the color component separation.

Claims (16)

1. An image encoding device for receiving a color moving image signal composed of a plurality of color components as an input, dividing the color moving image signal into predetermined encoding unit areas for each of the plurality of color components, and selectively applying one of intra encoding and motion compensation prediction encoding to digitally compress the color moving image signal, comprising:

a block dividing unit for dividing the input color moving image signal into predetermined blocks to generate a signal of each of the encoding unit areas;

a predicted image generating unit for generating a predicted image for the signal of each of the encoding unit areas according to at least one prediction mode indicating a predicted image generating method and corresponding prediction overhead information;

a determining unit for determining a prediction mode used for encoding and corresponding prediction overhead information according to a prediction efficiency of the predicted image output from the predicted image generating unit;

a prediction error encoding unit for encoding a difference between the predicted image corresponding to the prediction mode determined by the determining unit and the input color moving image signal; and

an encoding unit for variable length-coding the prediction mode, the corresponding prediction overhead information, and an output from the prediction error encoding unit, wherein:

the determining unit selects one of use of the prediction mode used for encoding and the corresponding prediction overhead information in an area to be encoded of another color component constituting the same screen at the same image position and use of its own prediction mode and corresponding prediction overhead information for the color component to determine the prediction mode used for encoding and the corresponding prediction overhead information; and

the encoding unit multiplexes a prediction information encoding indication flag indicating means used for determining the prediction mode and the corresponding prediction overhead information in the bit stream for each of the encoding unit areas.

2. An image encoding method for receiving a color moving image signal composed of a plurality of color components as an input, dividing the color moving image signal into predetermined encoding unit areas for each of the plurality of color components, and selectively applying one of intra encoding and motion compensation prediction encoding to digitally compress the color moving image signal, comprising:

a block dividing step for dividing the input color moving image signal into predetermined blocks to generate a signal of each of the encoding unit areas;

a predicted image generating step for generating a predicted image for the signal of each of the encoding unit areas according to at least one prediction mode indicating a predicted image generating method and corresponding prediction overhead information;

a determining step for determining a prediction mode used for encoding and corresponding prediction overhead information according to a prediction efficiency of the predicted image output from the predicted image generating step;

a prediction error encoding step for encoding a difference between the predicted image corresponding to the prediction mode determined by the determining step and the input color moving image signal; and

an encoding step for variable length-coding the prediction mode, the corresponding prediction overhead information, and an output from the prediction error encoding step, wherein:

the determining step selects one of use of the prediction mode used for encoding and the corresponding prediction overhead information in an area to be encoded of another color component constituting the same screen at the same image position and use of its own prediction mode and corresponding prediction overhead information for the color component to determine the prediction mode used for encoding and the corresponding prediction overhead information; and

the encoding step multiplexes a prediction information encoding indication flag indicating means used for determining the prediction mode and the corresponding prediction overhead information in the bit stream for each of the encoding unit areas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2009
From: SEKIGUCHI, SHUNICHI; YAMAGISHI, SHUICHI; MORIYA, YOSHIMI; YAMADA, YOSHIHI; ASAI, KOHTARO; MURAKAMI, TOKUMICHI; IDEHARA, YUICHI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 022079/0257 →
Priority Claims (1)
JP 2007-170330 · Jun 28, 2007 · national
Continuity (1)
Related Publication 20090110067A1 · Apr 30, 2009