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A link performance model for multi-user wireless fading channels

机译:多用户无线衰落信道的链路性能模型

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The two-state Markov chain has been widely used to model fading channels in the performance study of upper-layer communication protocols in wireless networks. It can be used to model transmission success/failure based on the physical characteristics of the transmission channel. However, for shared wireless links, packet transmission depends on both the status of the link and the scheduling strategy used. In this poster, we propose a novel four-state Markov model, which takes into consideration the impacts of channel fading and scheduling on packet transmission over shared wireless links. It is further abstracted to an effective two-state Markov chain to facilitate analytical performance evaluation. To demonstrate the efficacy of the proposed model, we apply it to study the throughput, delay and delay jitter of a saturated traffic source, and the packet dropping probability at the network layer for data traffic under a buffer overflow dropping policy. Simulation results to demonstrate the reasonableness of the proposed model are also presented.
机译:在无线网络中上层通信协议的性能研究中,二状态马尔可夫链已被广泛用于对衰落信道进行建模。它可以用于基于传输通道的物理特性对传输成功/失败进行建模。但是,对于共享无线链路,数据包传输既取决于链路的状态,也取决于所使用的调度策略。在此海报中,我们提出了一种新颖的四态马尔可夫模型,该模型考虑了信道衰落和调度对共享无线链路上的数据包传输的影响。它被进一步抽象为有效的二态马尔可夫链,以促进分析性能评估。为了证明所提出模型的有效性,我们将其用于研究饱和流量源的吞吐量,延迟和延迟抖动,以及在缓冲区溢出丢弃策略下数据流量在网络层的数据包丢弃概率。仿真结果也证明了所提模型的合理性。

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