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A Simple Channel Assignment for Opportunistic Routing in Multi-radio Multi-channel Wireless Mesh Networks

机译:多无线电多通道无线网状网络中机会路由的简单频道分配

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Opportunistic routing (OR) involves multiple forwarding candidates to relay packets by taking advantage of the broadcast nature and multi-user diversity of the wireless medium. Compared with Traditional Routing (TR), OR is more suitable for the unreliable wireless link, and can evidently improve the end to end throughput of Wireless Mesh Networks (WMNs). At present, there are many achievements concerning OR in the single radio wireless network. However, the study of OR in multi radio wireless network stays the beginning stage. In this paper, we focus on OR in multi-radio multi-channel WMNs. We validate the advantage of OR in multi-radio multi-channel WMNs, and propose a Simple Channel Assignment for Opportunistic Routing (SCAOR), which assigns channel to flows. According to interference state of every node, SCAOR assigns a channel with minimum interference to each flow to balance channel load. The simulation result shows OR of dual-radio dual-channel WMNs can promote throughput evidently, specifically, 16.8% higher than throughput of TR in the dual-radio dual-channel WMNs, 87.11% and 111.8% higher than throughput of OR and TR in single-radio single-channel, respectively.
机译:机会的路由(或)涉及通过利用无线介质的广播性质和多用户多样性来传递数据包的多个转发候选。与传统路由(TR)相比,或者更适合于不可靠的无线链路,并且可以明显改善无线网状网络(WMN)的结束吞吐量。目前,有许多关于或单独的无线无线网络中的成就。然而,对多无线电无线网络的研究保持开始阶段。在本文中,我们专注于或在多无线电多通道WMN上。我们验证了多无线电多通道WMN的优势,并提出了一个用于机会频道路由(SCAOR)的简单频道分配,它为流程分配通道。根据每个节点的干扰状态,SCAOR为每个流的每个流分配最小干扰以平衡信道负载。模拟结果显示或双无线电双通道WMN可以显然地促进吞吐量,特别是在双无线电双通道WMNS中的TR吞吐量高出16.8%,比吞吐量高出87.11%和111.8%单无线电单通道分别。

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