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Mean-field analysis of CSMA wireless networks

机译:CSMA无线网络的平均场分析

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In recent years both the number and the variety of devices that rely on wireless connectivity have shown huge growth. Consequently, wireless networks are going through a tremendous growth in size and complexity, supporting immense numbers of nodes and data volumes. Well-established methodologies have been developed for evaluating the performance in saturated buffer conditions. However, these provide no insight in the performance of networks with intermittent packet arrivals. The occurrence of empty buffers in the latter scenario results in a complex interaction between activity states and packet queues, which severely complicates the performance analysis. Motivated by these challenges, we develop a mean-field approach to analyze buffer contents and packet delays in a many-sources regime. The mean-field behavior simplifies the analysis of a large-scale network with packet arrivals and buffer dynamics to a low-dimensional fixed-point calculation for a network with saturated buffers. In particular, the analysis yields explicit expressions for the buffer content and packet delay distribution in terms of the fixed-point solution. The method we propose can in fact be extended to more complex scenarios, and generalizations to a queue-based protocol and a multi-hop model are briefly outlined.
机译:近年来,依赖无线连接的数量和各种设备都表明了巨大的增长。因此,无线网络正在进行大小和复杂性的巨大增长,支持巨大的节点和数据量。已经开发出良好的方法,用于评估饱和缓冲条件下的性能。但是,这些不提供具有间歇数据包到来的网络性能的见解。后一种情况下的空缓冲器的发生导致活动状态和分组队列之间的复杂交互,这严重复杂化了性能分析。通过这些挑战,我们开发了一个平均场方法来分析了许多来源制度中的缓冲内容和数据包延迟。平均字段行为简化了具有数据包到达的大型网络的分析,并将缓冲器动力学与具有饱和缓冲区的网络的低维定点计算。特别地,分析产生了对固定点解决方案的缓冲内容和分组延迟分布的显式表达式。我们提出的方法实际上可以扩展到更复杂的场景,并简要概述了基于队列的协议和多跳模型的概括。

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