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Throughput Optimization in Wireless Networks Under Stability and Packet Loss Constraints

机译:稳定性和丢包约束下的无线网络吞吐量优化

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摘要

The problem of throughput optimization in decentralized wireless networks with spatial randomness under queue stability and packet loss constraints is investigated in this paper. Two key performance measures are analyzed, namely the effective link throughput and the network spatial throughput. Specifically, the tuple of medium access probability, coding rate, and maximum number of retransmissions that maximize each throughput metric is analytically derived for a class of Poisson networks, in which packets arrive at the transmitters following a geometrical distribution. Necessary conditions so that the effective link throughput and the network spatial throughput are stable and achievable under bounded packet loss are determined, as well as upper bounds for both cases by considering the unconstrained optimization problem. Our results show in which system configuration stable achievable throughput can be obtained as a function of the network density and the arrival rate. They also evince conditions for which the per-link throughput-maximizing operating points coincide or not with the aggregate network throughput-maximizing operating regime.
机译:研究了在队列稳定性和丢包约束下具有空间随机性的分散无线网络吞吐量优化问题。分析了两个关键性能指标,即有效链路吞吐量和网络空间吞吐量。具体而言,针对一类泊松网络分析得出了媒体访问概率,编码率和使每个吞吐量度量最大化的最大重传次数的元组,其中,数据包按照几何分布到达发射机。通过考虑无约束的优化问题,确定了在有限制的包丢失情况下稳定和可实现的有效链路吞吐量和网络空间吞吐量所必需的条件,以及这两种情况的上限。我们的结果表明,可以根据网络密度和到达率来获得稳定的系统配置吞吐量。它们还提出了使每个链路吞吐量最大化操作点与总网络吞吐量最大化操作方案一致或不一致的条件。

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