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Sum of Absolute Difference-based Rate-Distortion Optimization Cost Function for H.265/HEVC Intra-Mode Prediction

机译:基于绝对差异的速率 - 失真优化优化成本函数的总和,用于H.265 / HEVC内部模式预测

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The emerging standard of High Efficiency Video Coding (HEVC) provides a 50% improved compression performance compared to its predecessor H.264/AVC at the expense of increasing its computational complexity which is due to a large number of modes involved in the decision process where it would increase encoding time and provide hardware limitations. In this paper, the reduction of intra-coding complexity is proposed by utilization of Rate-Distortion Optimization (RDO) in preselecting a mode with the best RD cost, among all 35 intra-modes. Two cost functions – Sum of Absolute Difference (SAD) and Sum of Absolute Transform Difference (SATD, available in the HEVC Test Model (HM) Reference Software, are determined by making encoder decisions. This paper compares the performance and complexity cost of SAD only for intra-mode, with SATD-based intra-mode by modifying the HM reference encoder through forced selection of the mentioned modes. Results show that SAD consistently produces the least encoding time among all modes, along with sensible values of bitrate. Furthermore, error concealment was introduced in decoding the video sequences with the use of IEEE 802.22 Standard which only allowed power gains resulting to packet error rates (PER) ranging from 1% to 30% for the analysis on the behavior of each video sequence in an environment where error is introduced.
机译:高效率视频的新兴的标准编码(HEVC)相比,它的前身H.264 / AVC在增加其计算复杂性为代价的,其是由于大量参与决策过程,其中模式提供了一个50%的改善的压缩性能它会增加编码时间,并提供硬件限制。在本文中,帧内编码复杂度的降低在预选的最佳RD成本的模式时,所有35个帧内模式中提出了通过率失真优化(RDO)的利用率。两个成本函数 - 求和绝对差(SAD)和点心绝对的变换差(SATD,在HEVC测试模型(HM)参考软件可用,是通过使编码器决定确定本文比较的只能SAD的性能和复杂性成本。通过修改通过提及的模式的强制选择的HM参考编码器,用于帧内模式,与SATD基于帧内模式。结果表明,SAD一致生产的所有模式中的最小编码时间,随着比特率的合理的值一起。此外,错误隐蔽在所述视频序列与使用IEEE 802.22标准的,只容许所得到的分组错误率(PER)的环境下误差范围从1%至30%为上的每个视频序列的行为的分析功率增益解码引入介绍。

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