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Delay Analysis and Optimality of Scheduling Policies for Multihop Wireless Networks

机译:多跳无线网络的时延分析和调度策略优化

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摘要

We analyze the delay performance of a multihop wireless network with a fixed route between each source–destination pair. We develop a new queue grouping technique to handle the complex correlations of the service process resulting from the multihop nature of the flows. A general set-based interference model is assumed that imposes constraints on links that can be served simultaneously at any given time. These interference constraints are used to obtain a fundamental lower bound on the delay performance of any scheduling policy for the system. We present a systematic methodology to derive such lower bounds. For a special wireless system, namely the clique, we design a policy that is sample-path delay-optimal. For the tandem queue network, where the delay-optimal policy is known, the expected delay of the optimal policy numerically coincides with the lower bound. We conduct extensive numerical studies to suggest that the average delay of the back-pressure scheduling policy can be made close to the lower bound by using appropriate functions of queue length.
机译:我们分析了在每个源-目的地对之间具有固定路由的多跳无线网络的延迟性能。我们开发了一种新的队列分组技术来处理由于流程的多跳性质而导致的服务流程的复杂关联。假定基于通用集合的干扰模型会对可在任何给定时间同时服务的链路施加约束。这些干扰约束用于获得系统的任何调度策略的延迟性能的基本下限。我们提出了一种系统的方法来得出这样的下界。对于特殊的无线系统(即集团),我们设计的采样路径延迟最佳策略。对于知道延迟最佳策略的串联队列网络,最佳策略的预期延迟在数值上与下限一致。我们进行了广泛的数值研究,建议通过使用适当的队列长度函数,可以使背压调度策略的平均延迟接近下限。

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