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The Medium Time Metric: High Throughput Route Selection in Multi-rate Ad Hoc Wireless Networks

机译:中等时间指标:多速率Ad Hoc无线网络中的高吞吐量路由选择

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摘要

Modern wireless devices, such as those that implement the 802.11abg standards, utilize multiple transmission rates in order to accommodate a wide range of channel conditions. The use of multiple rates presents a significantly more complex challenge to ad hoc routing protocols than the traditional single rate model. The hop count routing metric, which is traditionally used in single rate networks, is sub-optimal in multi-rate networks as it tends to select short paths composed of maximum length links. In a multi-rate network, these long distance links operate at the slowest available rate, thus achieving low effective throughput and reduced reliability due to the low signal levels. In this work we explore the lower level medium access control and physical phenomena that affect routing decisions in multi-rate ad hoc networks. We provide simulation results which illustrate the impact of these phenomena on effective throughput and show how the traditional minimum hop routing strategy is inappropriate for multi-rate networks. As an alternative, we present the Medium Time Metric (MTM) which avoids using the long range links often selected by shortest path routing in favor of shorter, higher throughput, more reliable links. Our experimental results with 802.11 g radios show that the Medium Time Metric achieves significantly higher throughput then alternative metrics. We observed up to 17 times more end-to-end TCP throughput than when the Min Hop or ETX metrics were used.
机译:现代无线设备(例如那些实现802.11abg标准的设备)利用多种传输速率来适应广泛的信道条件。与传统的单速率模型相比,多速率的使用给临时路由协议带来了更为复杂的挑战。传统上在单速率网络中使用的跃点计数路由度量在多速率网络中是次优的,因为它倾向于选择由最大长度的链路组成的短路径。在多速率网络中,这些长距离链路以最慢的可用速率运行,由于信号电平低,因此实现了较低的有效吞吐量并降低了可靠性。在这项工作中,我们探索了影响多速率ad hoc网络中路由选择决策的较低层介质访问控制和物理现象。我们提供的仿真结果说明了这些现象对有效吞吐量的影响,并说明了传统的最小跃点路由策略如何不适用于多速率网络。作为替代方案,我们提出了“中时度量标准(MTM)”,它避免了使用通常由最短路径路由选择的长距离链接,而倾向于使用更短,吞吐量更高,更可靠的链接。我们在802.11 g无线电设备上的实验结果表明,与其他指标相比,Medium Time Metric实现了更高的吞吐量。与使用Min Hop或ETX指标相比,我们观察到的端到端TCP吞吐量高出17倍。

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