首页> 外文会议>Visual Communications and Image Processing 2005 pt.4 >Systematic Lossy Error Protection for Video Transmission over Wireless Ad Hoc Networks
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Systematic Lossy Error Protection for Video Transmission over Wireless Ad Hoc Networks

机译:通过无线自组织网络进行视频传输的系统有损错误保护

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Wireless ad hoc networks present a challenge for error-resilient video transmission, since node mobility and multipath fading result in time-varying link qualities in terms of packet loss ratio and available bandwidth. In this paper, we propose to use a systematic lossy error protection (SLEP) scheme for video transmission over wireless ad hoc networks. The transmitted video signal has two parts - a systematic portion consisting of a video sequence transmitted without channel coding over an error-prone channel, and error protection information consisting of a bitstream generated by Wyner-Ziv encoding of the video sequence. Using an end-to-end video distortion model in conjunction with online estimates of packet loss ratio and available bandwidth, the optimal Wyner-Ziv description can be selected dynamically according to current channel conditions. The scheme can also be applied to choose one path for transmission from amongst multiple candidate routes with varying available bandwidths and packet loss ratios, so that the expected end-to-end video distortion is maximized. Experimental results of video transmission over a simulated ad hoc wireless network shows that the proposed SLEP scheme outperforms the conventional application layer FEC approach in that it provides graceful degradation of received video quality over a wider range of packet loss ratios and is less susceptible to inaccuracy in the packet loss ratio estimation.
机译:无线自组织网络对容错视频传输提出了挑战,因为节点移动性和多径衰落会导致丢包率和可用带宽方面的时变链路质量。在本文中,我们建议对无线ad hoc网络上的视频传输使用系统性有损错误保护(SLEP)方案。所发送的视频信号具有两个部分:系统部分,包括在容易出错的信道上不进行信道编码而发送的视频序列,以及差错保护信息,其包括通过视频序列的Wyner-Ziv编码生成的比特流。使用端到端视频失真模型,结合在线估计丢包率和可用带宽,可以根据当前信道条件动态选择最佳Wyner-Ziv描述。该方案还可以应用于从具有可变可用带宽和丢包率的多个候选路由中选择一条路径进行传输,从而使预期的端到端视频失真最大化。通过模拟自组织无线网络进行视频传输的实验结果表明,所提出的SLEP方案优于常规应用层FEC方法,因为它在较宽的丢包率范围内提供了接收视频质量的适度降级,并且在不精确的情况下不易受到影响。丢包率估计。

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