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Joint source-channel coding for motion-compensated DCT-based SNR scalable video

机译:基于运动补偿的基于DCT的SNR可伸缩视频的联合源信道编码

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In this paper, we develop an approach toward joint source-channel coding for motion-compensated DCT-based scalable video coding and transmission. A framework for the optimal selection of the source and channel coding rates over all scalable layers is presented such that the overall distortion is minimized. The algorithm utilizes universal rate distortion characteristics which are obtained experimentally and show the sensitivity of the source encoder and decoder to channel errors. The proposed algorithm allocates the available bit rate between scalable layers and, within each layer, between source and channel coding. We present the results of this rate allocation algorithm for video transmission over a wireless channel using the H.263 Version 2 signal-to-noise ratio (SNR) scalable codec for source coding and rate-compatible punctured convolutional (RCPC) codes for channel coding. We discuss the performance of the algorithm with respect to the channel conditions, coding methodologies, layer rates, and number of layers.
机译:在本文中,我们开发了一种方法,用于基于运动补偿的基于DCT的可伸缩视频编码和传输的联合源通道编码。提出了用于在所有可缩放层上最优选择源和信道编码率的框架,从而使总失真最小。该算法利用了通过实验获得的通用速率失真特性,并显示了源编码器和解码器对信道错误的敏感性。所提出的算法在可伸缩层之间以及在每一层内源和信道编码之间分配可用的比特率。我们介绍了使用H.263版本2信噪比(SNR)可扩展编解码器进行源代码编码和速率兼容穿孔卷积(RCPC)代码进行无线信道上视频传输的速率分配算法的结果。我们将针对信道条件,编码方法,层速率和层数来讨论算法的性能。

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