IP Library › Granted Patent US 12,101,471
Granted Patent B2
US 12,101,471 · App. 18/210,512 · Granted Sep 24, 2024

Dynamic image decoding device, dynamic image decoding method, dynamic image decoding program, dynamic image encoding device, dynamic image encoding method, and dynamic image encoding program

Inventors: Shigeru Fukushima (Yokohama, JP); Hiroya Nakamura (Yokohama, JP); Satoru Sakazume (Yokohama, JP); Toru Kumakura (Yokohama, JP); Hiroyuki Kurashige (Yokohama, JP); Hideki Takehara (Yokohama, JP)
Assignee: JVCKENWOOD CORPORATION
H04N19/107H04N19/105H04N19/137H04N19/176H04N19/423
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Quick Facts
Patent No.
US 12,101,471
App. No.
18/210,512
Granted
Sep 24, 2024
Kind
B2
Abstract

In order to provide efficient coding technology with a low load, a picture decoding device includes a spatial motion information candidate derivation unit configured to derive a spatial motion information candidate from motion information of a block neighboring a decoding target block in a space domain, a temporal motion information candidate derivation unit configured to derive a temporal motion information candidate from motion information of a block neighboring a decoding target block in a time domain, and a history-based motion information candidate derivation unit configured to derive a history-based motion information candidate from a memory for retaining motion information of a decoded block, wherein the temporal motion information candidate is compared with neither the spatial motion information candidate nor the history-based motion information candidate with respect to the motion information.

Claims (46)

1. A moving-picture decoding device comprising:

a spatial motion information candidate derivation unit configured to derive a spatial motion information candidate from motion information of a block neighboring a decoding target block in a space domain;

a temporal motion information candidate derivation unit configured to derive a temporal motion information candidate from motion information of a block neighboring a decoding target block in a time domain; and

a history-based motion information candidate derivation unit configured to derive a history-based motion information candidate from a memory for retaining motion information of a decoded block,

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information, and

the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate are added to the motion information candidate list in this order.

2. A moving-picture decoding method for use in a moving-picture decoding device, the moving-picture decoding method comprising steps of:

deriving a spatial notion information candidate from motion information of a block neighboring a decoding target block in a space domain;

deriving a temporal motion information candidate from motion information of a block neighboring a decoding target block in a time domain;

deriving a history-based motion information candidate from a memory for retaining motion information of a decoded block; and

adding the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate to the motion information candidate list in this order;

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information.

3. A non-transitory computer readable medium having stored thereon instructions that when executed by at least one processor cause the at least one processor to perform moving-picture decoding the moving-picture decoding comprising:

deriving a spatial motion information candidate from motion information of a block neighboring a decoding target block in a space domain;

deriving a temporal motion information candidate from motion information of a block neighboring a decoding target block in a time domain;

deriving a history-based motion information candidate from a memory for retaining motion information of a decoded block; and

adding the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate to the motion information candidate list in this order;

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information.

4. A moving-picture coding device comprising:

a spatial motion information candidate derivation unit configured to derive a spatial motion information candidate from motion information of a block neighboring a coding target block in a space domain;

a temporal motion information candidate derivation unit configured to derive a temporal motion information candidate from motion information of a block neighboring a coding target block in a time domain; and

a history-based motion information candidate derivation unit configured to derive a history-based motion information candidate from a memory for retaining motion information of a coded block,

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information, and

the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate are added to the motion information candidate list in this order.

5. A moving-picture coding method for use in a moving-picture coding device, the moving-picture coding method comprising steps of:

deriving a spatial motion information candidate from motion information of a block neighboring a coding target block in a space domain;

deriving a temporal motion information candidate from motion information of a block neighboring a coding target block in a time domain;

deriving a history-based motion information candidate from a memory for retaining motion information of a coded block; and

adding the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate to the motion information candidate list in this order;

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information.

6. A non-transitory computer readable medium having stored thereon instructions that when executed by at least one processor cause the at least one processor to perform moving-picture coding the moving-picture coding comprising:

deriving a spatial motion information candidate from motion information of a block neighboring a coding target block in a space domain;

deriving a temporal motion information candidate from motion information of a block neighboring a coding target block in a time domain;

deriving a history-based motion information candidate from a memory for retaining motion information of a coded block; and

adding the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate to the motion information candidate list in this order;

wherein the history-based motion information candidate is compared with the spatial notion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information.

7. A non-transitory computer readable medium storing a bitstream that is generated by an encoding method, wherein the encoding method comprising:

deriving a spatial notion information candidate from motion information of a block neighboring a coding target block in a space domain;

deriving a temporal motion information candidate from motion information of a block neighboring a coding target block in a time domain;

deriving a history-based motion information candidate from a memory for retaining motion information of a coded block, and

adding the spatial motion information candidate, the temporal motion information candidate and the history-based motion information candidate to the motion information candidate list in this order;

wherein the history-based motion information candidate is compared with the spatial motion information candidate with respect to the motion information and is not compared with the temporal motion information candidate with respect to the motion information.

8. A storing method comprising a step of:

storing a bitstream that is generated by the moving-picture coding method according to claim 5 .

9. A transmitting method comprising a step of:

transmitting a bitstream that is generated by the moving-picture coding method according to claim 5 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2023
From: FUKUSHIMA, SHIGERU; NAKAMURA, HIROYA; SAKAZUME, SATORU; KUMAKURA, TORU; KURASHIGE, HIROYUKI; TAKEHARA, HIDEKI
To: JVCKENWOOD CORPORATION
Reel/Frame 063967/0342 →
Priority Claims (2)
JP 2018-247407 · Dec 28, 2018 · national
JP 2019-063065 · Mar 28, 2019 · national
Continuity (3)
Continuation 17962421 · Oct 7, 2022
Continuation 17417351
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