Cross-layer modeling of AMC/ARQ-based wireless networks with outdated CSI

J. Ramis, G. Femenias, L. Carrasco
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引用次数: 7

Abstract

State-of-the-art wireless communications standards combine (hybrid) automatic repeat request (HARQ) protocols at the data link control (DLC) layer with adaptive modulation and coding (AMC) strategies at the physical layer. Most previous work on cross-layer modeling of these networks assumes the availability of ideal channel state information (CSI). However, in practical systems the CSI used to perform link adaptation may be outdated. This paper presents a generalized cross-layer multidimensional discrete-time Markov chain (DTMC)-based queuing model that jointly exploits the capabilities of ARQ and AMC, by explicitly accounting for imperfections in the AMC scheme caused by the delay in the CSI feedback channel. Based on the stationary state probability distribution of the proposed multidimensional DTMC, closed-form analytical expressions for performance metrics such as average throughput, queue length, packet delay and packet loss rate are derived, and an analysis of the impact of using outdated CSI on these performance parameters is presented.
过时CSI下基于AMC/ arq无线网络的跨层建模
最先进的无线通信标准在数据链路控制(DLC)层将(混合)自动重复请求(HARQ)协议与物理层的自适应调制和编码(AMC)策略相结合。以前关于这些网络的跨层建模的大多数工作都假设了理想信道状态信息(CSI)的可用性。然而,在实际系统中,用于执行链路自适应的CSI可能已经过时。本文提出了一种基于广义跨层多维离散马尔可夫链(DTMC)的排队模型,该模型明确地考虑了由CSI反馈通道延迟引起的AMC方案的缺陷,并联合利用了ARQ和AMC的能力。基于所提出的多维DTMC的稳态概率分布,导出了平均吞吐量、队列长度、数据包延迟和丢包率等性能指标的封闭解析表达式,并分析了使用过时的CSI对这些性能参数的影响。
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