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Real-life experiments of Multi-Radio Multi-Channel wireless mesh networks: 802.11n is not any better than 802.11a!

机译:多无线电多通道无线网状网络的现实实验:802.11n不是802.11a的任何优秀!

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Wireless Mesh Network (WMN) has become a popular access network architecture in the community due to its low cost and readily deployable nature. However, it is well known that multi-hop transmission in WMN is vulnerable to bandwidth degradation, primarily due to contention and radio interference. A straightforward solution to this problem is to use mesh nodes with multiple radios and channels. In this paper, we demonstrate through real-world experiments that the use of multiple radios and channels solely cannot solve the multi-hop TCP throughput degradation problem in IEEE 802.11n mesh networks. We verify that it is because the round trip time (RTT) for wireless communication path increases significantly with the number of hops, and the TCP throughput is limited inversely by the RTT. Due to this TCP throughput limitation, we also found interestingly that the multi-hop TCP throughput (up to five hops) of 802.11a is comparable to that of 802.11n. Our results give a key message that a new generation of TCP needs to be proposed and adopted so as to support the ever advancing wireless technologies and growing demand of multi-hop communications in wireless mesh networks.
机译:无线网状网络(WMN)由于其低成本和易于部署的性质,已成为社区中的流行接入网络架构。然而,众所周知,WMN中的多跳传输容易受带宽劣化,主要原因是由于争用和无线电干扰。对此问题的直接解决方案是使用具有多个无线电和通道的网状节点。在本文中,我们通过现实世界实验证明了多个无线电和渠道的使用完全无法解决IEEE 802.11n网格网络中的多跳TCP吞吐量劣化问题。我们验证了它是因为无线通信路径的往返时间(RTT)随着跳数而显着增加,而TCP吞吐量依赖于RTT。由于此TCP吞吐量限制,我们还发现有趣的是,802.11a的多跳TCP吞吐量(最多五叉)与802.11n的多跳TCP吞吐量相当。我们的结果提供了一个关键消息,即需要提出和采用新一代的TCP,以支持无线网状网络中越来越多的无线技术和越来越多的多跳通通信的需求。

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