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Optimal Bit Allocation for Hybrid Scalable/Multiple-Description Video Transmission Over Wireless Channels

机译:无线信道上可扩展/多描述混合视频传输的最佳比特分配

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摘要

In this paper, we consider the problem of optimal bit allocation for wireless video transmission over fading channels. We use a newly developed hybrid scalable/multiple-description codec that combines the functionality of both scalable and multiple-description codecs. It produces a base layer and multiple-description enhancement layers. Any of the enhancement layers can be decoded (in a non-hierarchical manner) with the base layer to improve the reconstructed video quality. Two different channel coding schemes (Rate-Compatible Punctured Convolutional (RCPC)/Cyclic Redundancy Check (CRC) coding and, product code Reed Solomon (RS)+RCPC/CRC coding) are used for unequal error protection of the layered bitstream. Optimal allocation of the bitrate between source and channel coding is performed for discrete sets of source coding rates and channel coding rates. Experimental results are presented for a wide range of channel conditions. Also, comparisons with classical scalable coding show the effectiveness of using hybrid scalable/multiple-description coding for wireless transmission.
机译:在本文中,我们考虑了在衰落信道上进行无线视频传输的最佳比特分配问题。我们使用新开发的混合可伸缩/多描述编解码器,该编解码器结合了可伸缩和多描述编解码器的功能。它产生一个基础层和多个描述增强层。任何增强层都可以与基础层一起解码(以非分层方式),以改善重建的视频质量。两种不同的信道编码方案(速率兼容穿刺卷积(RCPC)/循环冗余校验(CRC)编码和乘积码Reed Solomon(RS)+ RCPC / CRC编码)用于分层比特流的不均等错误保护。对于源编码速率和信道编码速率的离散集合,执行源编码和信道编码之间的比特率的最佳分配。给出了针对各种信道条件的实验结果。而且,与经典可伸缩编码的比较显示了使用混合可伸缩/多描述编码进行无线传输的有效性。

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