Ltr frame updating in video encoding
US-2024414352-A1 · Dec 12, 2024 · US
US9894380B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9894380-B2 |
| Application number | US-201615364889-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 30, 2016 |
| Priority date | Aug 17, 2010 |
| Publication date | Feb 13, 2018 |
| Grant date | Feb 13, 2018 |
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Provided is an apparatus for encoding a moving picture that determines a quantization step size of a previous coding block according to scan order as the quantization step size predictor of the current coding block when a quantization step size of a left coding block of a current coding block and a quantization step size of an above coding block of the current coding block are unavailable and determines an available motion vector encountered first when retrieving motion vectors in the order of motion vector of a first predetermined position and motion vector of a second predetermined position in a reference picture as a temporal motion vector candidate. Therefore, it is possible to reduce the amount of coding bits required to encode motion information and the quantization step size of the current prediction block.
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The invention claimed is: 1. An apparatus for encoding a moving picture, comprising: a picture division unit configured to determine a size and a prediction mode of each coding block; an inter prediction unit configured to determine a reference picture and a motion vector of a current block by performing motion estimation and extract a prediction block corresponding to the current block from the reference picture based on the motion vector when the current block is coded in inter prediction mode; a transform unit configured to transform a residual block obtained by calculating difference between the current block and the prediction block to generate a transform block; a quantization unit configured to determine a quantization step size of a current coding block and quantize the transform block using the quantization step size to generate a quantized transform block; a scanning unit configured to scan quantized transform coefficients of the quantized transform block to generate one-dimensional (1D) quantized transform coefficients; and an entropy coding unit configured to entropy-code the 1D quantized transform coefficients, wherein the motion vector predictor is an available spatial motion vector candidate or an available temporal motion vector candidate and the temporal motion vector candidate is an available motion vector encountered first when retrieving motion vectors in the order of motion vector of a first predetermined position and motion vector of a second predetermined position in a reference picture, and wherein, when the quantization step size of the left coding block of the current coding block and the quantization step size of the above coding block of the current coding block are unavailable, a quantization step size of previous coding block in scan order is determined as the quantization step size predictor of the current coding block. 2. The apparatus of claim 1 , wherein the quantization step size predictor is determined on each coding block. 3. The apparatus of claim 1 , further comprising: an intra prediction unit configured to determine an intra prediction mode of the current block and generate the prediction block of the current block according to the intra prediction mode when the current block is coded in intra prediction mode, wherein, when a size of the transform block is larger than 4×4, the quantized transform coefficients of the quantized transform block are divided into a plurality of sub-blocks, wherein, when the current block is coded in intra prediction mode, the scanning unit scans the plurality of sub-blocks using a scan pattern determined by the intra prediction mode of the current block, and wherein, the current block is coded in inter prediction mode, the scanning unit scans the plurality of sub-blocks using a predetermined scan pattern. 4. The apparatus of claim 3 , wherein the scanning unit scans the plurality of sub-blocks in a reverse direction.
by predictive encoding · CPC title
between spatial and temporal predictive coding, e.g. picture refresh · 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
Motion estimation with initialisation of the vector search, e.g. estimating a good candidate to initiate a search · CPC title
involving temporal prediction (adaptive coding with adaptive selection between spatial and temporal predictive coding H04N19/107; adaptive coding with adaptive selection among a plurality of temporal predictive coding modes H04N19/109) · CPC title
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