发明名称 APPARATUS FOR DECODING MOVING PICTURE
摘要 Provided is an apparatus for decoding 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 decode motion information and the quantization step size of the current prediction block.
申请公布号 US2017085909(A1) 申请公布日期 2017.03.23
申请号 US201615364725 申请日期 2016.11.30
申请人 M&K HOLDINGS INC. 发明人 Oh Soo Mi;Yang Moonock
分类号 H04N19/52;H04N19/91;H04N19/107;H04N19/126;H04N19/61;H04N19/159;H04N19/129 主分类号 H04N19/52
代理机构 代理人
主权项 1. An apparatus for decoding a moving picture, comprising: an entropy decoding unit configured to restore an intra prediction mode index, motion information and a quantization coefficient sequence; an inverse scanning unit configured to generate a quantized transform block by inversely scanning the quantized coefficient sequence in the unit of sub-block when a size of the quantized transform block is larger than a predetermined size; an inverse quantization unit configured to generate a quantization step size predictor, restore a quantization step size by adding the quantization step size predictor and a remaining quantization step size, and generate a transform block by inversely quantizing the quantized transform block using the quantization step size; an inverse transform unit configured to restore a residual block by inversely transforming the transform block; an inter prediction unit configured to determine a motion vector predictor of a current block based on the motion information, restore a motion vector of the current block using the motion vector predictor, and generate a prediction block of the current block using the motion vector when the current block is coded in inter prediction mode; an intra prediction unit configured to restore an intra prediction mode of the current block based on the intra prediction mode index and generate a prediction block of the current block according to the intra prediction mode when the current block is coded in intra prediction mode; and an adding unit configured to generate an original block by adding the prediction block and the residual block, wherein the motion vector predictor is an available spatial motion vector candidate or an available temporal motion vector candidate of the current block and the available temporal motion vector candidate of the current block is an available motion vector encountered first when retrieving motion vectors in the order of a motion vector of a first predetermined position and a motion vector of a second predetermined position in a same reference picture, wherein, when the current block is coded in intra prediction mode, the inverse scanning unit restores a plurality of sub-blocks by applying a scan pattern determined according to the intra prediction mode of the current block on the quantization coefficient sequence, and restores the quantized transform block by applying a scan pattern determined according to the intra prediction mode of the current block on the plurality of sub-blocks, wherein the scan pattern for restoring the plurality of sub-blocks from the quantization coefficient sequence is the same as the scan pattern for restoring the quantized transform block from the plurality of sub-blocks, wherein, when the current block is coded in inter prediction mode, the inverse scanning unit restores a plurality of sub-blocks by applying a predetermined scan pattern on the quantization coefficient sequence, and restores the quantized transform block by applying the predetermined scan pattern on the plurality of sub-blocks, wherein, 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, the inverse quantization unit 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, and wherein the quantization step size predictor is determined on a coding block having a size equal to or larger than a predetermined size.
地址 Seoul KR