IP Library › Granted Patent US 11,876,983
Granted Patent B2
US 11,876,983 · App. 17/981,715 · Granted Jan 16, 2024

Method and apparatus for encoding/decoding image signals using weight prediction parameter sets based on size of current block

Inventors: Joo Hee Moon (Seoul, KR); Sung Won Lim (Seoul, KR); Dong Jae Won (Goyang-si, KR)
Assignee: Industry Academy Cooperation Foundation of Sejong University
H04N19/176H04N19/105H04N19/132H04N19/136H04N19/167H04N19/196H04N19/50H04N19/503
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Quick Facts
Patent No.
US 11,876,983
App. No.
17/981,715
Granted
Jan 16, 2024
Kind
B2
Abstract

A method for decoding/encoding an image signal with the decoding/encoding apparatus according to the present invention may comprise the steps of obtaining a first prediction sample of a current block by performing inter prediction on the current block, determining one or more weight prediction parameter candidates for the current block, determining a weight prediction parameter of the current block from the one or more weight prediction parameter candidates, and obtaining a second prediction sample of the current block by applying the weight prediction parameter to the first prediction sample. Herein, a number of the one or more weight prediction parameter candidates is variably determined based on a size of the current block.

Claims (33)

1. A method for decoding a video signal with a decoding apparatus, comprising:

obtaining, with the decoding apparatus, a first prediction sample of a current block by performing inter prediction on the current block;

determining, with the decoding apparatus, one or more weight prediction parameter candidates for the current block;

determining, with the decoding apparatus, a weight prediction parameter of the current block from the one or more weight prediction parameter candidates; and

obtaining, with the decoding apparatus, a second prediction sample of the current block by applying the weight prediction parameter to the first prediction sample,

wherein a number of the one or more weight prediction parameter candidates is variably determined based on a size of the current block,

wherein when the size of the current block is equal to a first block size, the number of the one or more weight prediction parameter candidates available for the current block is five,

wherein when the size of the current block is equal to a second block size, the number of the one or more weight prediction parameter candidates available for the current block is less than five,

wherein when the number of the one or more weight prediction parameter candidates is greater than one, the weight prediction parameter of the current block is determined based on index information specifying the weight prediction parameter of the current block among the weight prediction parameter candidates, and

wherein the index information is signaled from a bitstream in units of blocks.

2. A method for encoding a video signal with an encoding apparatus, comprising:

obtaining, with the encoding apparatus, a first prediction sample of a current block by performing inter prediction on the current block;

determining, with the encoding apparatus, one or more weight prediction parameter candidates for the current block;

determining, with the encoding apparatus, a weight prediction parameter of the current block from the one or more weight prediction parameter candidates; and

obtaining, with the encoding apparatus, a second prediction sample of the current block by applying the weight prediction parameter to the first prediction sample,

wherein a number of the one or more weight prediction parameter candidates is variably determined based on a size of the current block,

wherein when the size of the current block is equal to a first block size, the number of the one or more weight prediction parameter candidates available for the current block is five,

wherein when the size of the current block is equal to a second block size, the number of the one or more weight prediction parameter candidates available for the current block is less than five,

wherein when the number of the one or more weight prediction parameter candidates is greater than one, index information specifying the weight prediction parameter of the current block among the weight prediction parameter candidates is encoded, and

wherein the index information is encoded into a bitstream in units of blocks.

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

obtaining a first prediction sample of a current block by performing inter prediction on the current block;

determining one or more weight prediction parameter candidates for the current block;

determining a weight prediction parameter of the current block from the one or more weight prediction parameter candidates;

obtaining a second prediction sample of the current block by applying the weight prediction parameter to the first prediction sample;

obtaining a prediction block of the current block based on the second prediction sample;

obtaining a residual block of the current block based on the prediction block of the current block and an original block of the current block; and

encoding the residual block,

wherein a number of the one or more weight prediction parameter candidates is variably determined based on a size of the current block,

wherein when the size of the current block is equal to a first block size, the number of the one or more weight prediction parameter candidates available for the current block is five,

wherein when the size of the current block is equal to a second block size, the number of the one or more weight prediction parameter candidates available for the current block is less than five,

wherein when the number of the one or more weight prediction parameter candidates is greater than one, index information specifying the weight prediction parameter of the current block among the weight prediction parameter candidates is encoded, and

wherein the index information is encoded into a bitstream in units of blocks.

Priority Claims (4)
KR 10-2016-0052699 · Apr 29, 2016 · national
KR 10-2016-0052702 · Apr 29, 2016 · national
KR 10-2017-0050051 · Apr 18, 2017 · national
KR 10-2017-0050052 · Apr 18, 2017 · national
Continuity (4)
Continuation 17743590 · May 13, 2022
Continuation 17159240 · Jan 27, 2021
Continuation 16097419
Related Publication 20230063859A1 · Mar 2, 2023