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Joint Source/Channel Coding Based on Two-Dimensional Optimization for Scalable H.264/AVC Video

机译:基于二维优化的可扩展H.264 / AVC视频联合源/信道编码

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The scalable extension of the H.264/AVC video coding standard (SVC) demonstrates superb adaptability in video communications. Joint source and channel coding (JSCC) has been shown to be very effective for such scalable video consisting of parts of different significance. In this paper, a new JSCC scheme for SVC transmission over packet loss channels is proposed which performs two-dimensional optimization on the quality layers of each frame in a rate-distortion (R-D) sense as well as on the temporal hierarchical structure of frames under dependency constraints. To compute the end-to-end R-D points of a frame, a novel reduced trellis algorithm is developed with a significant reduction of complexity from the existing Viterbi-based algorithm. The R-D points of frames are sorted under the hierarchical dependency constraints and optimal JSCC solution is obtained in terms of the best R-D performance. Experimental results show that our scheme outperforms the existing scheme of [13] with average quality gains of 0.26 dB and 0.22 dB for progressive and non-progressive modes respectively.
机译:H.264 / AVC视频编码标准(SVC)的可扩展扩展展示了在视频通信中的出色适应性。联合源和频道编码(JSCC)已被证明对于由不同重要性部分组成的这种可伸缩视频非常有效。本文提出了一种新的用于丢包信道上SVC传输的JSCC方案,该方案在速率失真(RD)的意义上对每个帧的质量层以及在依赖约束。为了计算帧的端到端R-D点,开发了一种新颖的简化网格算法,与现有的基于Viterbi的算法相比,大大降低了复杂度。帧的R-D点在层次依赖性约束下进行排序,并根据最佳R-D性能获得最佳JSCC解决方案。实验结果表明,对于渐进模式和非渐进模式,我们的方案均优于[13]的现有方案,其平均质量增益分别为0.26 dB和0.22 dB。

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