信道自适应错误保护可扩展的视频在信道上的位错误和包擦除

Guijin Wang, Qian Zhang, Wenwu Zhu
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引用次数: 14

摘要

由于无线互联网的出现,通过具有比特错误和数据包擦除的信道进行视频通信变得越来越重要。为了在应用层提供QoS,产品代码适合用于纠正这些信道中发生的传输错误。在本文中,我们提出了一种新颖的分层产品代码,用于在具有比特错误和丢包的信道上可扩展的视频流。提出了一种端到端架构,可以同时解决基于误码控制、分组和率失真的比特分配问题。一旦估计了可用的网络条件,不相等的产品代码将应用于可扩展视频的不同层。具体来说,每一层首先被分成不同行信道码和不同列信道码的块。然后提出了基于率失真的比特分配方法来确定信道速率和信源速率,从而使预期的端到端失真最小化。仿真结果证明了所提出的错误保护方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Channel-adaptive error protection for scalable video over channels with bit errors and packet erasures
Video communication over channels with both bit errors and packet erasures is becoming increasingly important due to the emerging of wireless Internet. To have QoS provision at application level, product code is suited to correct the transmission errors occurring in such channels. In this paper, we presented a novel layered product code for scalable video streaming over the channels with both bit errors and packet losses. An end-to-end architecture is proposed to simultaneously address the error control, packetization and rate-distortion based bit allocation. Once the available network conditions are estimated, the unequal product codes are applied to different layers of scalable video. Specifically, each layer is first divided into blocks with unequal row channel code and unequal column channel code added. Then rate-distortion based bit allocation is proposed to determine the channel rates and the source rate so as to minimize the expected end-to-end distortion. The simulations demonstrated effectiveness of our proposed error protection scheme.
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