Coding enhancement in cross-component sample adaptive offset

US12495153B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12495153-B2
Application numberUS-202418600315-A
CountryUS
Kind codeB2
Filing dateMar 8, 2024
Priority dateSep 8, 2021
Publication dateDec 9, 2025
Grant dateDec 9, 2025

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Abstract

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An electronic apparatus performs a method of decoding video signal, including: receiving, from the video signal, a picture frame that includes a first component, and a second component; selecting an edge direction across a collocated sample of the first component or a current sample of the second component relative to the respective sample of the second component; calculating a first edge strength determining a difference between values of two samples from the group consisting of the collocated or current sample, a first neighbouring sample, and a second neighbouring sample; quantizing the first edge strength into M segments according to M−1 threshold values; determining the classifier for the respective sample of the second component based on the M segments; determining a sample offset for the respective sample of the second component according to the classifier; and modifying the respective sample of the second component based on the determined sample offset.

First claim

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What is claimed is: 1 . A method of decoding a video signal, comprising: receiving, from the video signal, a picture frame that includes a first component, and a second component; determining a classifier for a respective sample of the second component according to an edge direction and one or more edge strengths of a collocated sample of the first component or a current sample of the second component relative to the respective sample of the second component; determining a sample offset for the respective sample of the second component according to the classifier; and modifying the respective sample of the second component based on the determined sample offset; wherein determining the classifier for the respective sample of the second component according to the edge direction and the one or more edge strengths comprises: selecting the edge direction across the collocated or current sample; locating a first neighbouring sample and a second neighbouring sample of the collocated or current sample; calculating a first edge strength by determining a difference between values of two samples from the group consisting of the collocated or current sample, the first neighbouring sample, and the second neighbouring sample; quantizing the first edge strength into M segments according to M−1 threshold values T(1), . . . T(M−1), wherein M is a positive integer; and determining the classifier based on the M segments. 2 . The method of claim 1 , wherein the first component is one selected from the group consisting of a luma component, a first chroma component and a second chroma component, and the second component is one selected from the group consisting of the luma component, the first chroma component and the second chroma component. 3 . The method of claim 1 , wherein determining the classifier based on the M segments comprises determining the classifier using M classes corresponding to the M segments. 4 . The method of claim 1 , wherein quantizing the first edge strength into M segments according to M−1 threshold values T(1), . . . T(M−1) comprises quantizing the first edge strength into segments [−2 b +1, T(1)), [T(1), T(2)), . . . [T(M−1), 2 b −1], wherein the first edge strength has a range from [−2 b +1, 2 b −1] and b is a sequence bitdepth of the video signal. 5 . The method of claim 1 , wherein the two samples from the group consisting of the collocated or current sample, the first neighbouring sample, and the second neighbouring sample are the collocated or current sample, and the first neighbouring sample, wherein determining the classifier for the respective sample of the second component according to the edge direction and the one or more edge strengths further comprises: calculating a second edge strength by determining a difference between values of the collocated or current sample, and the second neighbouring sample; quantizing the second edge strength into N segments according to N−1 threshold values T(1), . . . T(N−1), wherein N is a positive integer; and determining the classifier additionally based on the N segments. 6 . The method of claim 5 , wherein determining the classifier additionally based on the N segments comprises determining the classifier using M×N classes corresponding to combined M×N segments. 7 . The method of claim 5 , wherein M is not equal to N or M is equal to N. 8 . The method of claim 1 , wherein the threshold values T(1), . . . T(M−1) are symmetrically distributed with a symmetric center at 0. 9 . The method of claim 1 , wherein the two samples from the group consisting of the collocated or current sample, the first neighbouring sample, and the second neighbouring sample are the first neighbouring sample, and the second neighbouring sample. 10 . The method of claim 1 , wherein selecting the edge direction across the collocated or current sample comprises selecting the edge direction from the group consisting of edge directions at 0, 22.5, 45, 67.5, 90, 112.5, and 135 degrees. 11 . The method of claim 1 , wherein the edge direction, the M−1 threshold values, a sample distance of the first neighbouring sample from the collocated or current sample, and a sample distance of the second neighbouring sample from the collocated or current sample are predefined or signaled in one or more of Sequence Parameter Set (SPS), Adaptation parameter set (APS), Picture parameter set (PPS), Picture header (PH), Slice header (SH), Region, Coding tree unit (CTU), Coding unit (CU), Subblock, and Sample levels. 12 . The method of claim 1 , wherein determining the classifier for the respective sample of the second component is additionally according a band classifier, wherein the band classifier is determined by: utilizing a sample value based on one or more samples from the collocated and neighboring samples of the first component, and the current and neighboring samples of the second component relative to the respective sample of the second component; dividing a range of the sample value into several bands; and, selecting a band based on an intensity value of the sample value. 13 . The method of claim 5 , wherein determining the classifier for the respective sample of the second component is additionally according a band classifier, wherein the band classifier is determined by: utilizing a sample value based on one or more samples from the collocated and neighboring samples of the first component, and the current and neighboring samples of the second component relative to the respective sample of the second component; dividing a range of the sample value into several bands; and, selecting a band based on an intensity value of the sample value. 14 . An electronic apparatus comprising: one or more processing units; a memory coupled to the one or more processing units; and a plurality of programs stored in the memory that, when executed by the one or more processing units, cause the electronic apparatus to perform a method comprising: receiving, from a video signal, a picture frame that includes a first component, and a second component; determining a classifier for a respective sample of the second component according to an edge direction and one or more edge strengths of a collocated sample of the first component or a current sample of the second component relative to the respective sample of the second component; determining a sample offset for the respective sample of the second component according to the classifier; and modifying the respective sample of the second component based on the determined sample offset; wherein determining the classifier for the respective sample of the second component according to the edge direction and the one or more edge strengths comprises: selecting the edge direction across the collocated or current sample; locating a first neighbouring sample and a second neighbouring sample of the collocated or current sample; calculating a first edge strength by determining a difference between values of two samples from the group consisting of the collocated or current sample, the first neighbouring sample, and the second neighbouring sample; quantizing the first edge strength into M segments according to M−1 threshold values T(1), . . . T(M−1), wherein M is a positive integer; and determining the classifier based on the M segments. 15 . The apparatus of claim 14 , wherein the first component is one selected from the group consisting of a luma component, a first chroma component and a second chroma component, and the second component is one selected from the group consisting of the luma component, the first chroma component

Assignees

Inventors

Classifications

  • the unit being a colour or a chrominance component · CPC title

  • Quantisation · CPC title

  • Selection of the reference unit for prediction within a chosen coding or prediction mode, e.g. adaptive choice of position and number of pixels used for prediction · CPC title

  • Adaptive subdivision aspects, e.g. subdivision of a picture into rectangular or non-rectangular coding blocks · CPC title

  • involving reduction of coding artifacts, e.g. of blockiness · CPC title

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What does patent US12495153B2 cover?
An electronic apparatus performs a method of decoding video signal, including: receiving, from the video signal, a picture frame that includes a first component, and a second component; selecting an edge direction across a collocated sample of the first component or a current sample of the second component relative to the respective sample of the second component; calculating a first edge stren…
Who is the assignee on this patent?
Beijing Dajia Internet Information Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification H04N19/44. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Dec 09 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).