Optimized Bit Extraction of H.264-SVC MGS stream over error-prone channels

Zhao Kai, H. Cui, Tang Kun
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Abstract

Classical Bit Extraction algorithms can guarantee truncated scalable coded video stream with good reconstructed quality under error-free bandwidth limited channels. However, they are deficient in two folds: firstly, packet loss is not considered in the truncated rate-distortion model; secondly the reference of original video sequence is unavoidable. To overcome the above shortcomings, this paper firstly introduces a low complexity error propagation distortion model, in which error drift distortion due to rate truncation and packet loss can both be analyzed in the absence of the original sequence. Based on this model, an optimized bit extraction algorithm is proposed for the transmission of H.264/SVC MGS stream over bandwidth limited error-prone channels. Extensive simulation results show that, the error drift distortion of both base layer and enhancement layer can be accurately predicted based on the introduced error propagation distortion model. In addition, compared with the benchmark bit extraction algorithms provided by JSVM, our proposed algorithm can not only provide a higher reconstructed quality of truncated MGS video stream under various rate constraints and channel conditions, but as well achieve the promising performance with a much lower time complexity.
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H.264-SVC MGS流在易出错信道上的优化比特提取
经典的比特提取算法可以保证在无差错带宽有限的信道下,截断的可扩展编码视频流具有良好的重构质量。然而,它们有两个不足:一是截断率失真模型没有考虑丢包问题;其次,原始视频序列的参考是不可避免的。为了克服上述缺点,本文首先引入了一种低复杂度的错误传播失真模型,该模型可以在没有原始序列的情况下分析由速率截断和丢包引起的错误漂移失真。基于该模型,提出了一种H.264/SVC MGS流在带宽受限易出错信道上传输的优化比特提取算法。大量的仿真结果表明,基于所引入的误差传播畸变模型,可以准确地预测基层和增强层的误差漂移畸变。此外,与JSVM提供的基准比特提取算法相比,我们提出的算法不仅可以在各种速率约束和信道条件下提供更高的截断MGS视频流重构质量,而且以更低的时间复杂度取得了令人满意的性能。
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