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Adaptive transmission policy design for delay-sensitive and bursty packet traffic over wireless fading channels

机译:无线衰落信道上延迟敏感和突发数据包流量的自适应传输策略设计

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摘要

In this paper, we consider the problem of transmission of a delay-sensitive and bursty traffic source over a time-varying Nakagami-m fading channel in a cross-layer optimization framework. Aiming at minimizing the packet delay due to queuing at the data link layer, we present power and rate adaptation policies for coded M-QAM modulation schemes, which guarantee a prescribed channel packet error rate constraint. This is also equivalent to minimizing the system packet loss rate. The proposed adaptation policies are derived both for block and correlated channel fading scenarios. To enable the transmission policy design, we use a statistical model to characterize the packet delay derived from a known result of large deviations theory. Considering the error resolution capability of the automatic repeat request protocol, we then provide the appropriate analytical tools to incorporate the effect of packet retransmission in the proposed optimization framework for transmission policy design. The results show that the proposed adaptation policies compared to others adaptive solutions, significantly improve the delay and throughput performance for delay-sensitive bursty traffic over time-varying fading channels.
机译:在本文中,我们考虑了跨层优化框架中时变Nakagami-m衰落信道上时延敏感和突发流量源的传输问题。为了最小化由于在数据链路层排队而引起的分组延迟,我们提出了用于编码M-QAM调制方案的功率和速率自适应策略,该策略保证了规定的信道分组错误率约束。这也等同于最小化系统丢包率。所提出的自适应策略是针对块和相关信道衰落场景而导出的。为了实现传输策略设计,我们使用统计模型来表征从大偏差理论的已知结果得出的数据包延迟。考虑到自动重复请求协议的错误解决能力,我们然后提供适当的分析工具,以将数据包重传的影响纳入所提出的传输策略设计优化框架中。结果表明,与其他自适应解决方案相比,所提出的自适应策略显着提高了时变衰落信道上对延迟敏感的突发流量的延迟和吞吐量性能。

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