无线IP网络中视频传输的混合差错控制机制

F. Hartanto, H. Sirisena
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引用次数: 55

摘要

考虑到无线链路的带宽有限,无线网络中的差错控制机制必须具有频谱效率。为此,我们开发了一种混合误差控制体系结构,该结构考虑了分层视频编码的使用。此外,该体系结构还包括一个模块,该模块估计接收方观察到的数据包错误率和往返时间,并根据估计调整所使用的冗余级别。通过在体系结构中选择不同的选项,得到不同的误差控制方案。本文研究了五种不同的误差控制方案,即ARQ、纯FEC、混合FEC/ARQ、具有优先级依赖冗余的混合FEC/ARQ和具有优先级依赖冗余的自适应混合FEC/ARQ的性能。我们使用MPEG-2视频跟踪来评估这些方案的性能。结果表明,纯FEC的整体性能最差。ARQ方案在低误码率和短往返时间下具有最佳性能,而优先级感知混合FEC/ARQ方案具有或不具有FEC自适应在其他条件下具有最佳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid error control mechanism for video transmission in the wireless IP networks
Considering the limited bandwidth of the wireless link, it is important that the error control mechanism in wireless networks be spectrally efficient. Towards this end, we develop a hybrid error control architecture which takes into account the use of hierarchical video coding. Additionally, the architecture also includes a module which estimates the packet error rate and round trip time observed by the receiver and adjusts the level of redundancy used based on the estimate. By choosing different options in the architecture, we get different error control schemes. In this paper, we investigate the performance of five different error control schemes, namely ARQ, pure FEC, hybrid FEC/ARQ, hybrid FEC/ARQ with priority-dependent redundancy, and adaptive hybrid FEC/ARQ with priority-dependent redundancy. We evaluate the performance of these schemes using MPEG-2 video traces. The results show that pure FEC offers the worst overall performance. The ARQ scheme offers the best performance under low bit error rate and short round trip time, while the priority-aware hybrid FEC/ARQ with or without FEC adaptation offers the best performance under other conditions.
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