为了解决高分辨率及超高分辨率的视频数据量庞大的问题,国际视频编码标准化组织正制定更先进的视频压缩标准——高效视频编码标准(High Efficiency Video Coding,HEVC),即H.265。帧内编码作为视频编码的重要组成部分,其编码的复杂度和...为了解决高分辨率及超高分辨率的视频数据量庞大的问题,国际视频编码标准化组织正制定更先进的视频压缩标准——高效视频编码标准(High Efficiency Video Coding,HEVC),即H.265。帧内编码作为视频编码的重要组成部分,其编码的复杂度和性能会严重影响整个视频的编码复杂度和压缩性能。为了降低HEVC中帧内编码的复杂度,文章提出了一种重新确定备选模式列表的方法,该方法根据备选模式列表中第一个模式的不同,快速自适应地确定备选模式列表中需要保留的模式,减少执行率失真优化的模式数目。实验结果表明,文章提出的算法在保证与标准测试平台HM8.0编码性能一致的条件下,帧内编码时间与原始HM8.0相比平均节省24.50%,有效地降低了帧内编码的复杂度。同时,所提出的算法能够与其它层次的快速编码方法相融合,以进一步减少复杂度。展开更多
In High Efficiency Video Coding, the Residual Quad-Yree (RQT) coding is used to encode the prediction residual for both intra and inter Coding Units (CU) and provides improved coding gains. However, this results i...In High Efficiency Video Coding, the Residual Quad-Yree (RQT) coding is used to encode the prediction residual for both intra and inter Coding Units (CU) and provides improved coding gains. However, this results in much higher computational complexities. To address this problem, we develop two fast RQT algorithms for intra- and inter-prediction residual coding respectively. For intra coding, the proposed algorithm selects the best prediction mode in the rate distortion mode decision process using a Prediction Unit (PU) size-dependent fast RQT depth decision on a reduced prediction mode candidates set from the rough mode decision process. For inter coding, in addition to CU size-dependent fast RQT depth decisions, we propose a discriminant analy- sis-based fast depth decision algorithm to det- ermine the best transform unit size. Experimental results show that on average, we can real- ise a 21.29% encoding time saving and 0.03% bit-rate reduction for intra coding, while 15% of the encoding time can be saved with a negligible coding performance loss for inter coding.展开更多
文摘为了解决高分辨率及超高分辨率的视频数据量庞大的问题,国际视频编码标准化组织正制定更先进的视频压缩标准——高效视频编码标准(High Efficiency Video Coding,HEVC),即H.265。帧内编码作为视频编码的重要组成部分,其编码的复杂度和性能会严重影响整个视频的编码复杂度和压缩性能。为了降低HEVC中帧内编码的复杂度,文章提出了一种重新确定备选模式列表的方法,该方法根据备选模式列表中第一个模式的不同,快速自适应地确定备选模式列表中需要保留的模式,减少执行率失真优化的模式数目。实验结果表明,文章提出的算法在保证与标准测试平台HM8.0编码性能一致的条件下,帧内编码时间与原始HM8.0相比平均节省24.50%,有效地降低了帧内编码的复杂度。同时,所提出的算法能够与其它层次的快速编码方法相融合,以进一步减少复杂度。
基金supported by the National Natural Science Foundation of China under Grant No.61272502the National Basic Research Program of China (973 Program) under Grant No.2010CB327900the National Science Fund for Distinguished Young Scholars under Grant No.61125206
文摘In High Efficiency Video Coding, the Residual Quad-Yree (RQT) coding is used to encode the prediction residual for both intra and inter Coding Units (CU) and provides improved coding gains. However, this results in much higher computational complexities. To address this problem, we develop two fast RQT algorithms for intra- and inter-prediction residual coding respectively. For intra coding, the proposed algorithm selects the best prediction mode in the rate distortion mode decision process using a Prediction Unit (PU) size-dependent fast RQT depth decision on a reduced prediction mode candidates set from the rough mode decision process. For inter coding, in addition to CU size-dependent fast RQT depth decisions, we propose a discriminant analy- sis-based fast depth decision algorithm to det- ermine the best transform unit size. Experimental results show that on average, we can real- ise a 21.29% encoding time saving and 0.03% bit-rate reduction for intra coding, while 15% of the encoding time can be saved with a negligible coding performance loss for inter coding.