IP Library Granted Patent US 9,503,749
Granted Patent B2
US 9,503,749 · App. 14/803,257 · Granted Nov 22, 2016

Efficient rounding for deblocking

Inventors: Matthias Narroschke (Schaafheim, DE); Anand Kotra (Frankfurt, DE); Semih Esenlik (Nazilli, TR); Thomas Wedi (The Hague, NL)
Assignee: SUN PATENT TRUST
H04N19/55H04N19/117H04N19/14H04N19/174H04N19/182H04N19/44H04N19/46H04N19/593H04N19/80H04N19/82H04N19/86
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Quick Facts
Patent No.
US 9,503,749
App. No.
14/803,257
Granted
Nov 22, 2016
Kind
B2
Abstract

The present disclosure relates to deblocking filtering which is applicable to smoothing the block boundaries in an image or video coding and decoding. In particular, the deblocking filtering is either strong or weak, wherein the clipping is performed differently in the strong filtering and the weak filtering.

Claims (40)

1. An image encoding apparatus for encoding an image on a per block basis, the image encoding apparatus comprising:

an encoding unit that encodes the image on a per block basis to generate the encoded image;

a reconstruction unit that decodes the encoded image to generate a reconstructed image;

a judging unit that judges whether a strong or a weak filter is to be applied to a boundary between a current block and a neighboring block adjacent to the current block;

a calculating unit that calculates a linear combination of current samples in the current block and adjacent samples in the neighboring block, the current samples and the adjacent samples forming a line of samples;

a shifting unit that shifts the linear combination right by a predetermined number of bits;

a clipping unit that clips the shifted linear combination to generate a filtered sample of the filtered current block; and

a filtering unit that filters three samples included in each of the current block and the neighboring block when the strong filter is to be applied, and filter one or two samples included in each of the current block and the neighboring block when the weak filter is to be applied,

wherein (i) the shifted linear combination is clipped within a first range, for the strong filter, controlled by a first clipping parameter and (ii) the shifted linear combination is clipped within a second range, for the weak filter, controlled by a second clipping parameter regardless of any other condition, the first clipping parameter and the second clipping parameter depending on a strength of the boundary but the first range and the second range having a different range from each other, and

the first clipping parameter and the second clipping parameter are respectively determined using a quantization parameter.

2. An image encoding apparatus for encoding an image on a per block basis, the image encoding apparatus comprising:

one or more processors; and

storage connected to the one or more processors,

wherein the one or more processors execute the steps of:

encoding the image on a per block basis to generate the encoded image;

decoding the encoded image to generate a reconstructed image;

judging whether a strong or a weak filter is to be applied to a boundary between a current block included in the reconstructed image held in the storage and a neighboring block adjacent to the current block;

calculating a linear combination of current samples in the current block and adjacent samples in the neighboring block, the current samples and the adjacent samples forming a line of samples;

shifting the linear combination right by a predetermined number of bits;

clipping the shifted linear combination to generate a filtered sample of the filtered current block; and

wherein (i) the shifted linear combination is clipped with a first range, for the strong filter, controlled by a first clipping parameter and (ii) the shifted linear combination is clipped with a second range, for the weak filter, controlled by a second clipping parameter, the first clipping parameter and the second clipping parameter depending on a strength of the boundary but the first range and the second range having a different range from each other, and

the first clipping parameter and the second clipping parameter are respectively determined using a quantization parameter.

3. An image decoding method for decoding an encoded image on a block-by-block basis, the image decoding method comprising:

decoding the encoded image to generate a reconstructed image;

judging whether a strong or a weak filter is to be applied to a boundary between a current block included in the reconstructed image held in the storage and a neighboring block adjacent to the current block;

calculating a linear combination of current samples in the current block and adjacent samples in the neighboring block, the current samples and the adjacent samples forming a line of samples;

shifting the linear combination right by a predetermined number of bits;

clipping the shifted linear combination to generate a filtered sample of the filtered current block; and

wherein, in the clipping, (i) the shifted linear combination is clipped within a first range controlled by a first clipping parameter when the strong filter is to be applied and (ii) the shifted linear combination is clipped within a second range controlled by a second clipping parameter, the first clipping parameter and the second clipping parameter depending on a strength of the boundary but the first range and the second range having a different range from each other, and

the first clipping parameter and the second clipping parameter are respectively determined using a quantization parameter.

4. An image decoding apparatus for decoding an encoded image on a block-by-block basis, the image decoding method comprising:

a processor;

storage coupled to the processor, wherein the processor performs the steps of:

decoding the encoded image to generate and store a reconstructed image in the storage;

judging whether a strong or a weak filter is to be applied to a boundary between a current block included in the reconstructed image held in the storage and a neighboring block adjacent to the current block;

calculating a linear combination of current samples in the current block and adjacent samples in the neighboring block, the current samples and the adjacent samples forming a line of samples;

shifting the linear combination right by a predetermined number of bits;

clipping the shifted linear combination to generate a filtered sample of the filtered current block; and

wherein, in the clipping, (i) the shifted linear combination is clipped within a first range controlled by a first clipping parameter when the strong filter is to be applied and (ii) the shifted linear combination is clipped within a second range controlled by a second clipping parameter, the first clipping parameter and the second clipping parameter depending on a strength of the boundary but the first range and the second range having a different range from each other, and

the first clipping parameter and the second clipping parameter are respectively determined using a quantization parameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2016
From: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
To: SUN PATENT TRUST
Reel/Frame 038299/0213 →
Continuity (5)
Division 14496099 · Sep 25, 2014
Continuation 14264084 · Apr 29, 2014
Continuation PCTEP2012071748 · Nov 2, 2012
Provisional Application 61555181 · Nov 3, 2011
Related Publication 20150326877A1 · Nov 12, 2015