IP Library Granted Patent US 10,178,404
Granted Patent B2
US 10,178,404 · App. 15/836,120 · Granted Jan 8, 2019

Moving picture coding method, moving picture coding apparatus, moving picture decoding method, moving picture decoding apparatus and moving picture coding and decoding apparatus

Inventors: Toshiyasu Sugio (Osaka, JP); Takahiro Nishi (Nara, JP); Youji Shibahara (Tokyo, JP); Hisao Sasai (Osaka, JP)
Assignee: SUN PATENT TRUST
H04N19/513H04N19/105H04N19/503H04N19/52H04N19/56H04N19/573H04N19/577H04N19/107H04N19/109H04N19/70
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Quick Facts
Patent No.
US 10,178,404
App. No.
15/836,120
Granted
Jan 8, 2019
Kind
B2
Abstract

By the moving picture coding method and the moving picture decoding method, it is possible to improve coding efficiency. The moving picture coding apparatus includes a merge block candidate calculation unit that (i) specifies merge block candidates at merge mode, by using colpic information such as motion vectors and reference picture index values of neighbor blocks of a current block to be coded and a motion vector and the like of a collocated block of the current block which are stored in a colPic memory, and (ii) generates a combined merge block by using the merge block candidates.

Claims (14)

1. A moving picture decoding method for decoding a current block, comprising:

determining a first merge block candidate in a merge block candidate list and a second merge block candidate in the merge block candidate list, the first merge block candidate having at least (i) a first motion vector that has been used to decode a first block neighbor to the current block, (ii) a first prediction direction corresponding to the first motion vector, and (iii) a first reference picture index value to identify a first reference picture corresponding to the first motion vector, and the second merge block candidate having at least (i) a second motion vector that has been used to decode a second block neighbor to the current block and different from the first block, (ii) a second prediction direction corresponding to the second motion vector, and (iii) a second reference picture index value to identify a second reference picture corresponding to the second motion vector, wherein the second prediction direction is different from the first prediction direction and the merge block candidate list includes a plurality of merge block candidates one of which is selected to be used for decoding the current block;

generating a combined merge block candidate of bi-directional prediction by (i) assigning the first motion vector and the first reference picture index for the first prediction direction of the combined merge block candidate and (ii) assigning the second motion vector and the second reference picture index for the second prediction direction of the combined merge block candidate; and

decoding the current block by using a merge block candidate selected from the plurality of merge block candidates including the first merge block candidate, the second merge block candidate, and the combined merge block candidate.

2. The moving picture decoding method according to claim 1 ,

wherein when the merge block candidate that is selected to be used to decode the current block is the combined merge block candidate, the combined merge block candidate is used for the first prediction direction and the second prediction direction.

3. The moving picture decoding method according to claim 1 ,

wherein when the merge block candidate that is selected to be used to decode the current block is the combined merge block candidate, the first motion vector and the second motion vector of the combined merge block candidate are used for a direction corresponding to the first prediction direction and a direction corresponding to the second prediction direction.

4. A moving picture decoding apparatus that decodes a current block, comprising:

a memory including instructions; and

a processor which executes the instructions and performs:

determining a first merge block candidate in a merge block candidate list and a second merge block candidate in the merge block candidate list, the first merge block candidate having at least (i) a first motion vector that has been used to decode a first block neighbor to the current block, (ii) a first prediction direction corresponding to the first motion vector, and (iii) a first reference picture index value to identify a first reference picture corresponding to the first motion vector, and the second merge block candidate having at least (i) a second motion vector that has been used to decode a second block neighbor to the current block and different from the first block, (ii) a second prediction direction corresponding to the second motion vector, and (iii) a second reference picture index value to identify a second reference picture corresponding to the second motion vector, wherein the second prediction direction is different from the first prediction direction and the merge block candidate list includes a plurality of merge block candidates one of which is selected to be used for decoding the current block;

generating a combined merge block candidate of bi-directional prediction by (i) assigning the first motion vector and the first reference picture index for the first prediction direction of the combined merge block candidate and (ii) assigning the second motion vector and the second reference picture index for the second prediction direction of the combined merge block candidate; and

decoding the current block by using a merge block candidate selected from the plurality of merge block candidates including the first merge block candidate, the second merge block candidate, and the combined merge block candidate.

Continuity (5)
Continuation 15219525 · Jul 26, 2016
Continuation 14612535 · Feb 3, 2015
Division 13441994 · Apr 9, 2012
Provisional Application 61474507 · Apr 12, 2011
Related Publication 20180103264A1 · Apr 12, 2018