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Design and Performance Evaluation of IAR: Interference-Aware Routing Metric for Wireless Mesh Networks

机译:IAR的设计和性能评估:无线网状网络的可感知干扰的路由度量

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Multihop wireless mesh networks are an attractive solution for providing last-mile connectivity. However, the shared nature of the transmission medium makes it challenging to fully exploit these networks. In an attempt to improve the radio resource utilization, several routing metrics have been specifically designed for wireless mesh networks. However none of these routing metrics efficiently tackles interference issues. Moreover, although some evaluations have been conducted to assess the performance of these metrics in some contrived scenarios, no overall comparison has been performed. The contributions of this paper are consequently twofold. First, we propose a new routing metric, Interference-Aware Routing metric (IAR), specifically designed for WMNs. IAR uses MAC-level information to measure the share of the channel that each link is able to utilize effectively. As a result, paths that exhibit the least interference will be selected to route the data traffic. Then we evaluate the performance of IAR against some of the most popular routingrnmetrics currently used in wireless mesh networks: Hop Count, Blocking Metric, Expected Transmission Count (ETX), Expected Transmission Time (ETT), Modified ETX (mETX), Network Allocation Vector Count (NAVC) and Metric of Interference and Channel-Switching (MIC). We show under various simulation scenarios that IAR performs the best in terms of end-to-end delay and packet loss, and provides the fairest resource utilization.
机译:多跳无线网状网络是提供最后一英里连接性的有吸引力的解决方案。然而,传输介质的共享性质使得充分利用这些网络具有挑战性。为了提高无线电资源利用率,已经为无线网状网络专门设计了几种路由度量。但是,这些路由指标均无法有效解决干扰问题。而且,尽管已经进行了一些评估以评估在某些人为设计的方案中这些指标的性能,但尚未进行整体比较。因此,本文的贡献是双重的。首先,我们提出了一种新的路由度量标准,即专为WMN设计的干扰感知路由度量标准(IAR)。 IAR使用MAC级别的信息来衡量每个链路能够有效利用的信道份额。结果,将选择干扰最小的路径来路由数据流量。然后,我们针对无线网状网络中当前使用的一些最流行的路由度量来评估IAR的性能:跳数,阻塞度量,预期​​传输计数(ETX),预期传输时间(ETT),修改的ETX(mETX),网络分配向量计数(NAVC)和干扰与频道切换(MIC)的度量。我们在各种模拟情况下表明,IAR在端到端延迟和数据包丢失方面表现最佳,并提供了最合理的资源利用率。

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