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Distributed probabilistic medium access with multipacket reception and Markovian traffic

机译:具有多数据包接收和马尔可夫流量的分布式概率介质访问

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Enabling multipacket reception (MPR) at the physical layer is a promising way to achieve higher bandwidth efficiency while reducing the complexity of the medium access control layer in distributed wireless networks. We study distributed probabilistic access where transmitting nodes access the shared wireless medium with a probability based on the node's information about the aggregate traffic carried by the network. We model bursty traffic by rate-controlled two-state Markov sources and introduce a parameter that describes the "burstiness" level of the offered traffic. A throughput-optimal medium access strategy utilizing limited feedback is then described and its performance is examined for traffic with different levels of burstiness. It is shown that the bursty nature of the traffic in data networks allows for improvement of the bandwidth efficiency. Bounds on the system throughput are proposed and the queuing delay is analyzed.
机译:在物理层上启用多数据包接收(MPR)是一种有前途的方法,可实现更高的带宽效率,同时降低分布式无线网络中媒体访问控制层的复杂性。我们研究分布式概率访问,其中传输节点以有关网络承载的总流量的节点信息为基础,以概率访问共享的无线介质。我们通过速率控制的两种状态马尔可夫源对突发流量进行建模,并引入一个描述所提供流量的“突发性”级别的参数。然后描述了利用有限反馈的吞吐量最佳媒体访问策略,并针对不同突发性级别的流量检查其性能。可以看出,数据网络中业务的突发性允许提高带宽效率。提出了系统吞吐量的界限,并分析了排队延迟。

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