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Queuing with adaptive modulation and coding over wireless links: cross-Layer analysis and design

机译:无线链路上的自适应调制和编码排队:跨层分析和设计

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摘要

Assuming there are always sufficient data waiting to be transmitted, adaptive modulation and coding (AMC) schemes at the physical layer have been traditionally designed separately from higher layers. However, this assumption is not always valid when queuing effects are taken into account at the data link layer. In this paper, we analyze the joint effects of finite-length queuing and AMC for transmissions over wireless links. We present a general analytical procedure, and derive the packet loss rate, the average throughput, and the average spectral efficiency (ASE) of AMC. Guided by our performance analysis, we introduce a cross-layer design, which optimizes the target packet error rate of AMC at the physical layer, to minimize thpacket loss rate and maximize the average throughput, when combined with a finite-length queue at the data link layer. Numerical results illustrate the dependence of system performance on various parameters, and quantify the performance gain due to cross-layer optimization. Our focus is on the single user case, but we also discuss briefly possible applications to multiuser scenarios.
机译:假设始终有足够的数据等待发送,则传统上已与高层分开设计了物理层的自适应调制和编码(AMC)方案。但是,当在数据链路层考虑排队效应时,这种假设并不总是有效的。在本文中,我们分析了有限长度排队和AMC在无线链路上传输的联合影响。我们提出了一种通用的分析程序,并推导了AMC的丢包率,平均吞吐量和平均频谱效率(ASE)。在性能分析的指导下,我们引入了跨层设计,当与数据上的有限长度队列结合使用时,该设计可优化物理层AMC的目标数据包错误率,以最小化数据包丢失率并最大化平均吞吐量。链接层。数值结果说明了系统性能对各种参数的依赖性,并量化了跨层优化带来的性能增益。我们的重点是单用户案例,但我们还将简要讨论多用户方案的可能应用。

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