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Delay Analysis for Wireless Networks With Single Hop Traffic and General Interference Constraints

机译:具有单跳流量和一般干扰约束的无线网络的延迟分析

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We consider a class of wireless networks with general interference constraints on the set of links that can be served simultaneously at any given time. We restrict the traffic to be single-hop, but allow for simultaneous transmissions as long as they satisfy the underlying interference constraints. We begin by proving a lower bound on the delay performance of any scheduling scheme for this system. We then analyze a large class of throughput optimal policies which have been studied extensively in the literature. The delay analysis of these systems has been limited to asymptotic behavior in the heavy traffic regime and order results. We obtain a tighter upper bound on the delay performance for these systems. We use the insights gained by the upper and lower bound analysis to develop an estimate for the expected delay of wireless networks with mutually independent arrival streams operating under the well-known maximum weighted matching (MWM) scheduling policy. We show via simulations that the delay performance of the MWM policy is often close to the lower bound, which means that it is not only throughput optimal, but also provides excellent delay performance.
机译:我们考虑一类在链路集合上具有一般干扰约束的无线网络,这些链路可以在任何给定时间同时服务。我们将流量限制为单跳,但允许同时传输,只要它们满足潜在的干扰约束。我们首先证明该系统的任何调度方案的延迟性能的下限。然后,我们分析了一大类吞吐量最优策略,这些策略已在文献中进行了广泛研究。这些系统的延迟分析仅限于交通繁忙和秩序结果中的渐近行为。对于这些系统,我们在延迟性能上获得了更严格的上限。我们使用通过上限和下限分析获得的见解来开发对在众所周知的最大加权匹配(MWM)调度策略下运行的具有相互独立的到达流的无线网络的预期延迟的估计。通过仿真显示,MWM策略的延迟性能通常接近下限,这意味着它不仅吞吐量最佳,而且还具有出色的延迟性能。

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