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Design and implementation of a WLAN mesh router based on multipath routing

机译:基于多径路由的WLAN网路路由器的设计与实现

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This paper focuses on the development of an IEEE 802.11s-based WLAN mesh router, which supports a multichannel with multi-interface. In this work, we implemented not only the single path routing based AODV defined in IEEE 802.11s HWMP, but also a multipath routing which extended the standard. The multipath routing was intended to reduce the recovery time and the control message overhead when the routing path was recovered from node or link failure. We also developed an outdoor test bed with 12 WLAN mesh routers. The bandwidth of the mesh router and a real-time video streaming service were verified using the test bed. The single path and multipath routing algorithms are also compared. The average TCP bandwidth was 23.77 Mbps and the latency was 2.4 ms in five hops. The test bed could service real-time streaming of MPEG4 VGA video with an average jitter of 0.547 ms in five hops. The mesh router that used the multipath routing path reduced the path recovery time by 12.73% on average.
机译:本文侧重于基于IEEE 802.11的WLAN网路路由器的开发,它支持具有多界面的多声道。在这项工作中,我们不仅实现了IEEE 802.11s HWMP中定义的基于单路径路径的AODV,还实现了扩展标准的多径路由。多径路由旨在减少从节点或链路故障恢复路由路径时恢复时间和控制消息开销。我们还开发了一个带12个WLAN网路路由器的户外测试床。网路路由器的带宽和实时视频流服务使用测试床进行验证。还比较单个路径和多路径路由算法。平均TCP带宽为23.77 Mbps,延迟为5次跃点2.4毫秒。试验台可以使用0.547毫秒的平均抖动进行MPEG4 VGA视频的实时流式流。使用多径路由路径的网状路由器平均将路径恢复时间减少12.73%。

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