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Measurement and Modeling of the Origins of Starvation of Congestion-Controlled Flows in Wireless Mesh Networks

机译:无线网状网络中拥塞控制流的饥饿根源的测量和建模

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Significant progress has been made in understanding the behavior of TCP and congestion-controlled traffic over CSMA-based multihop wireless networks. Despite these advances, however, no prior work identified severe throughput imbalances in the basic scenario of mesh networks, in which a one-hop flow contends with a two-hop flow for gateway access. In this paper, we demonstrate via real network measurements, testbed experiments, and an analytical model that starvation exists in such a scenario; i.e., the one-hop flow receives most of the bandwidth, while the two-hop flow starves. Our analytical model yields a solution consisting of a simple contention window policy that can be implemented via standard mechanisms defined in IEEE 802.11e. Despite its simplicity, we demonstrate through analysis, experiments, and simulations that the policy has a powerful effect on network-wide behavior, shifting the network's queuing points, mitigating problematic MAC and transport behavior, and ensuring that TCP flows obtain a fair share of the gateway bandwidth, irrespective of their spatial location.
机译:在了解基于CSMA的多跳无线网络上的TCP行为和拥塞控制流量方面,已经取得了重大进展。尽管取得了这些进步,但是,在网格网络的基本情况下,尚无任何先验工作发现严重的吞吐量失衡,在这种情况下,单跳流与两跳流竞争网关访问。在本文中,我们通过实际的网络测量,试验台实验和分析模型证明了在这种情况下存在饥饿。即,一跳流接收大部分带宽,而两跳流则饿死。我们的分析模型提供了一种解决方案,该解决方案包含一个简单的竞争窗口策略,可以通过IEEE 802.11e中定义的标准机制来实现。尽管它很简单,但是我们通过分析,实验和模拟证明,该策略对网络范围的行为,改变网络的排队点,减轻有问题的MAC和传输行为以及确保TCP流获得公平的份额具有强大的影响。网关带宽,无论其空间位置如何。

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