IP Library Granted Patent US 11,917,166
Granted Patent B2
US 11,917,166 · App. 18/078,743 · Granted Feb 27, 2024

Weighted angular prediction coding for intra coding

Inventors: Yue Yu (San Diego, CA); Limin Wang (San Diego, CA); Krit Panusopone (San Diego, CA)
Assignee: ARRIS Enterprises LLC
H04N19/159G01B11/002H04N19/126H04N19/184H04N19/1883H04N19/593
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Quick Facts
Patent No.
US 11,917,166
App. No.
18/078,743
Granted
Feb 27, 2024
Kind
B2
Abstract

A method of decoding JVET video that includes receiving a bitstream indicating how a coding tree unit was partitioned into coding units, and parsing said bitstream to generate at least one predictor based on an intra prediction mode signaled in the bitstream, the intra prediction mode selected from a plurality of intra prediction modes for calculating a prediction pixel P[x,y] at coordinate x,y for the coding unit. A number of intra prediction modes available for coding the coding unit are reduced by replacing two or more non-weighted intra prediction modes by a weighted intra prediction mode.

Claims (20)

1. An apparatus for decoding video data using a decoder comprising one or more processors configured to:

(a) receive a bitstream indicating how a coding tree unit was partitioned into coding units according to a partitioning structure that allows nodes to be split according to a partitioning technique, where said partitioning technique allows nodes to be partitioned with quadtree partitioning, where said partitioning technique allows nodes to be partitioned with binary partitioning, wherein a node is recursively partitionable using said binary partitioning, where at least one of said binary partitioning results in a rectangular node;

(b) parsing said bitstream to generate at least one predictor based on an intra prediction mode signaled in the bitstream, the intra prediction mode selected from a plurality of intra prediction modes for calculating a prediction pixel P[x,y] at coordinate x,y for the coding unit;

(c) wherein the prediction pixel is calculated based upon a value where said value is determined based upon, a vertical pixel value being based upon at least one reconstructed pixel value of a next adjacent row above the coding unit, a horizontal pixel value being based upon at least one reconstructed pixel value of a next adjacent column left of the coding unit, said vertical pixel value having an associated vertical weight, said horizontal pixel value having an associated horizontal weight, a summation of (i) said vertical pixel value multiplied by said vertical weight (ii) said horizontal pixel value multiplied by said horizontal weight and (iii) an adjustment value based upon said vertical weight and said horizontal weight, and a value based upon said summation shifted by a bit shift operation to the right,

(d) wherein 65 intra angular prediction modes are reduced to 64 intra prediction modes by replacing a first non-weighted intra prediction mode 2 directed in a first direction and a second non-weighted intra prediction mode 66 directed in a second direction opposite of the first direction with at least one of a weighted intra prediction mode 2 or a weighted intra prediction mode 66.

2. An apparatus for decoding video data using a decoder comprising one or more processors configured to:

(a) receive a bitstream indicating how a coding tree unit was partitioned into coding units according to a partitioning structure that allows nodes to be split according to a partitioning technique, where said partitioning technique allows nodes to be partitioned with quadtree partitioning, where said partitioning technique allows nodes to be partitioned with binary partitioning, wherein a node is recursively partitionable using said binary partitioning, where at least one of said binary partitioning results in a rectangular node;

(b) parsing said bitstream to generate at least one predictor based on an intra prediction mode signaled in the bitstream, the intra prediction mode selected from a plurality of intra prediction modes for calculating a prediction pixel P[x,y] at coordinate x,y for the coding unit;

(c) wherein the prediction pixel is calculated based upon a value where said value is determined based upon, a vertical pixel value being based upon at least one reconstructed pixel value of a next adjacent row above the coding unit, a horizontal pixel value being based upon at least one reconstructed pixel value of a next adjacent column left of the coding unit, said vertical pixel value having an associated vertical weight, said horizontal pixel value having an associated horizontal weight, a summation of (i) said vertical pixel value multiplied by said vertical weight (ii) said horizontal pixel value multiplied by said horizontal weight and (iii) an adjustment value based upon said vertical weight and said horizontal weight, and a value based upon said summation shifted by a bit shift operation to the right,

(d) wherein the calculation uses a weighted average of reconstructed pixels of one or more above neighboring blocks and reconstructed pixels of one or more left neighboring blocks as the predictions for the pixels within the coding unit.

3. An apparatus for encoding video data using an encoder comprising one or more processors configured to:

(a) provide a bitstream indicating how a coding tree unit was partitioned into coding units according to a partitioning structure that allows nodes to be split according to a partitioning technique, where said partitioning technique allows nodes to be partitioned with quadtree partitioning, where said partitioning technique allows nodes to be partitioned with binary partitioning, wherein a node is recursively partitionable using said binary partitioning, where at least one of said binary partitioning results in a rectangular node;

(b) wherein said bitstream is configured to generate at least one predictor based on an intra prediction mode signaled in the bitstream, the intra prediction mode selected from a plurality of intra prediction modes for calculating a prediction pixel P[x,y] at coordinate x,y for the coding unit;

(c) wherein the prediction pixel is calculated based upon a value where said value is determined based upon, a vertical pixel value being based upon at least one reconstructed pixel value of a next adjacent row above the coding unit, a horizontal pixel value being based upon at least one reconstructed pixel value of a next adjacent column left of the coding unit, said vertical pixel value having an associated vertical weight, said horizontal pixel value having an associated horizontal weight, a summation of (i) said vertical pixel value multiplied by said vertical weight (ii) said horizontal pixel value multiplied by said horizontal weight and (iii) an adjustment value based upon said vertical weight and said horizontal weight, and a value based upon said summation shifted by a bit shift operation to the right,

(d) wherein the calculation uses a weighted average of reconstructed pixels of one or more above neighboring blocks and reconstructed pixels of one or more left neighboring blocks as the predictions for the pixels within the coding unit.

4. A non-transitory computer-readable storage medium having instructions stored thereon that, when executed, cause at least one processor to provide a bitstream of compressed video data for decoding by a decoder comprising:

(a) said bitstream containing data indicating how a coding tree unit was partitioned into coding units according to a partitioning structure that allows nodes to be split according to a partitioning technique, where said partitioning technique allows nodes to be partitioned with quadtree partitioning, where said partitioning technique allows nodes to be partitioned with binary partitioning, wherein a node is recursively partitionable using said binary partitioning, where at least one of said binary partitioning results in a rectangular node;

(b) said bitstream containing data indicating how to generate at least one predictor based on an intra prediction mode signaled in the bitstream, the intra prediction mode selected from a plurality of intra prediction modes for calculating a prediction pixel P[x,y] at coordinate x,y for the coding unit;

(c) wherein the prediction pixel is calculated based upon a value where said value is determined based upon, a vertical pixel value being based upon at least one reconstructed pixel value of a next adjacent row above the coding unit, a horizontal pixel value being based upon at least one reconstructed pixel value of a next adjacent column left of the coding unit, said vertical pixel value having an associated vertical weight, said horizontal pixel value having an associated horizontal weight, a summation of (i) said vertical pixel value multiplied by said vertical weight (ii) said horizontal pixel value multiplied by said horizontal weight and (iii) an adjustment value based upon said vertical weight and said horizontal weight, and a value based upon said summation shifted by a bit shift operation to the right,

(d) wherein the calculation uses a weighted average of reconstructed pixels of one or more above neighboring blocks and reconstructed pixels of one or more left neighboring blocks as the predictions for the pixels within the coding unit.

Assignments (2)
SECURITY INTEREST Recorded Apr 8, 2026
From: ARRIS ENTERPRISES LLC; RUCKUS IP HOLDINGS LLC
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 075476/0814 →
SECURITY INTEREST Recorded Dec 17, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE INC., OF NORTH CAROLINA; OUTDOOR WIRELESS NETWORKS LLC; RUCKUS IP HOLDINGS LLC
To: APOLLO ADMINISTRATIVE AGENCY LLC
Reel/Frame 069889/0114 →
Continuity (8)
Continuation 17475136 · Sep 14, 2021
Continuation 16823853 · Mar 19, 2020
Continuation 15605905 · May 25, 2017
Provisional Application 62486939 · Apr 18, 2017
Provisional Application 62481671 · Apr 4, 2017
Provisional Application 62481285 · Apr 4, 2017
Provisional Application 62341210 · May 25, 2016
Related Publication 20230105035A1 · Apr 6, 2023
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