具有延迟反馈的阻塞通道上的流的延迟-吞吐量权衡

H. Yao, Y. Kochman, G. Wornell
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引用次数: 6

摘要

我们关注的问题是在阻塞信道上的实时流与长反馈延迟,因为出现了实时卫星通信从一个共同的移动(COTM)终端。对于这个问题,我们引入了一个延迟的定义,它捕获了问题的实时性,我们显示,对于无内存通道,延迟的增长速度至少与O(log(k))一样快,其中k对应于传输中的数据包数量。此外,我们还展示了在这种延迟和捕获通信带宽需求的吞吐量的自然概念之间存在权衡。我们开发并分析了一种高效的“多突发”传输协议,以在该框架内实现良好的延迟-吞吐量权衡,我们表明可以通过编码来增强该协议以获得额外的性能收益。仿真验证了新协议在有内存和无内存信道上的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay-throughput tradeoff for streaming over blockage channels with delayed feedback
We focus on the problem of real-time streaming over a blockage channel with long feedback delay, as arises in real-time satellite communication from a comm-on-the-move (COTM) terminal. For this problem, we introduce a definition of delay that captures the real-time nature of the problem, which we show grows at least as fast as O(log(k)) for memoryless channels, where k corresponds to the number of packets in the transmission. Moreover, we show that a tradeoff exists between this delay and a natural notion of throughput that captures the bandwidth requirements of the communication. We develop and analyze an efficient “multi-burst” transmission protocol for achieving good delay-throughput tradeoffs within this framework, which we show can be augmented with coding for additional performance gains. Simulations validate the new protocols on channels with and without memory.
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