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Cross-Layer Optimization of Adaptive Modulation and Coding Preserving Packet Average Delay Time

机译:自适应调制和编码保留分组的跨层优化平均延迟时间

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In this paper we introduce a novel cross layer design between MAC and physical layers. Our novel design is based on controlling the adaptive modulation and coding (AMC) transmission mode at the physical layer according to the queue length of finite buffer at the data link layer and each transmission mode of AMC. The aim is optimizing system performance over a wireless link, preserving the important Quality of Service (QoS) parameter, packet average delay time. Analytical expressions such as packet drop probability, channel packet error rate, packet loss rate and packet average delay time are derived both analytically and through simulations according to the system and channel parameters. Using these expressions, a constrained optimization problem is solved numerically to maximize the overall system throughput, preserving packet average delay time.
机译:在本文中,我们在MAC和物理层之间引入了一种新的横梁设计。我们的新颖设计基于根据数据链路层的有限缓冲器的队列长度和AMC的每个传输模式来控制物理层的自适应调制和编码(AMC)传输模式。目的是通过无线链路优化系统性能,保留重要的服务质量(QoS)参数,数据包平均延迟时间。分析表达式,例如数据包丢失概率,信道分组错误率,分组丢失率和分组平均延迟时间是根据系统和信道参数的模拟来源的。使用这些表达式,在数字上解决了约束的优化问题,以最大化整体系统吞吐量,保留分组平均延迟时间。

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