IP Library Granted Patent US 8,934,537
Granted Patent B2
US 8,934,537 · App. 12/738,886 · Granted Jan 13, 2015

Video coding device and video coding method

Inventors: Hiroshi Arakawa (Nara, JP); Hideyuki Ohgose (Osaka, JP)
Assignee: Panasonic Corporation
H04N19/00266H04N19/00193H04N19/00951H04N19/00781H04N19/0009
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Quick Facts
Patent No.
US 8,934,537
App. No.
12/738,886
Granted
Jan 13, 2015
Kind
B2
Abstract

A video coding device includes a buffer simulation unit that calculates an occupation amount of a virtual buffer to be used for controlling a coding amount, by using, for each picture, (a) a code length of a code that is an intermediate result of compression coding and (b) a code length of a compressed code that is a final result of the compression coding. This means that, for a picture that has not yet processed by an arithmetic coding unit, an occupation amount of the virtual buffer is calculated by using a code length of codes provided from a binarization unit.

Claims (14)

1. A video coding device that performs compression coding on pictures included in video signals to generate coded pictures, the video coding device comprising:

a coder configured to perform the compression coding by performing at least orthogonal transformation, quantization, binarization, and arithmetic coding per picture of the pictures included in the video signals to generate a second code length that is a code length per picture actually outputted from the video coding device; and

a calculation unit including a processor configured to calculate an occupation amount of a virtual buffer to be used for controlling a coding amount by simulating a temporal change in the occupation amount, the simulation being performed using a first code length that is a code length obtained before the coder performs the arithmetic coding, the virtual buffer virtually expressing an accumulation amount of a decoder buffer to be used in a decoder,

wherein the processor of the calculation unit is configured, for a picture of the pictures, to:

(i) until the second code length corresponding to the first code length is generated, add the first code length to a current occupation amount of the virtual buffer to determine the occupation amount of the virtual buffer, and set a parameter to be used in the quantization based on the determined occupation amount of the virtual buffer; and

(ii) when the second code length corresponding to the first code length is actually generated, replace (a) the first code length corresponding to the actually generated second code length among code lengths added for the virtual buffer with (b) the actually generated second code length that is shorter than the first code length to re-determine the occupation amount of the virtual buffer, and set the parameter to be used in the quantization based on the re-determined occupation amount of the virtual buffer, and

wherein the occupation amount includes the current occupation amount and the first or second code length, such that only a portion of the occupation amount is replaced when the second code length corresponding to the first code length is generated.

2. A video coding method of performing compression coding via a video coding device on pictures included in video signals to generate coded pictures, the video coding method comprising:

performing the compression coding by performing at least orthogonal transformation, quantization, binarization, and arithmetic coding per picture of the pictures included in the video signals to generate a second code length that is a code length per picture actually outputted from the video coding method; and

calculating an occupation amount of a virtual buffer to be used for controlling a coding amount by simulating a temporal change in the occupation amount, the simulation being performed using a first code length that is a code length obtained before the performing of the compression coding performs the arithmetic coding, the virtual buffer virtually expressing an accumulation amount of a decoder buffer to be used in a decoder,

wherein the calculating further includes, for a picture of the pictures,

(i) until the second code length corresponding to the first code length is generated, adding the first code length to a current occupation amount of the virtual buffer to determine the occupation amount of the virtual buffer, and setting a parameter to be used in the quantization based on the determined occupation amount of the virtual buffer, and

(ii) when the second code length corresponding to the first code length is actually generated, replacing (a) the first code length corresponding to the actually generated second code length among code lengths added for the virtual buffer with (b) the actually generated second code length that is shorter than the first code length to re-determine the occupation amount of the virtual buffer, and setting the parameter to be used in the quantization based on the re-determined occupation amount of the virtual buffer, and

wherein the occupation amount includes the current occupation amount and the first or second code length, such that only a portion of the occupation amount is replaced when the second code length corresponding to the first code length is generated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2010
From: ARAKAWA, HIROSHI; OHGOSE, HIDEYUKI
To: PANASONIC CORPORATION
Reel/Frame 024574/0528 →
Priority Claims (1)
JP 2007-280729 · Oct 29, 2007 · national
Continuity (1)
Related Publication 20100220782A1 · Sep 2, 2010