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Implementation-Based Evaluation of a Full-Fledged Multihop TDMA-MAC for WiFi Mesh Networks

机译:WiFi网状网络的完整多跳TDMA-MAC的基于实现的评估

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Wireless mesh networks in general, and WiFi mesh networks in particular, offer a cost-effective option to provide broadband connectivity in sparse regions. Effective support for real-time as well as high throughput applications requires a TDMA-based approach. However, multihop TDMA implementations in wireless have been few and far-between, and for good reasons. These present significant issues in terms of time synchronization, TDMA schedule dissemination, multichannel support, routing integration, spatial reuse and so on. And achieving these efficiently, in the face of wireless channel losses presents a formidable challenge. In this work, we present an implementation of LiT MAC, a full-fledged multihop TDMA MAC, on commodity WiFi platforms. We undertake extensive evaluations using microbenchmarks as well as application level performance, using outdoor as well as indoor testbeds. We also present an integration of LiT MAC with various routing metrics, and a routing stability study of recently proposed routing metrics (ROMA, SLIQ). Our results show that we can achieve $(rm mu s)$ granularity time synchronization across several hops, and TDMA slot size as small as 2 ms. These imply low control overheads. Experiments over several days, on our nine-node outdoor testbed shows that LiT MAC's soft-state-based approach is effective in robust operation even in the presence of significant external interference.
机译:通常,无线网状网络特别是WiFi网状网络提供了一种经济高效的选择,可以在稀疏地区提供宽带连接。对实时以及高吞吐量应用程序的有效支持需要基于TDMA的方法。但是,无线技术的多跳TDMA实现很少而且相差甚远,这是有充分理由的。这些在时间同步,TDMA时间表分发,多通道支持,路由集成,空间重用等方面都存在重大问题。面对无线信道的丢失,有效地实现这些挑战提出了巨大的挑战。在这项工作中,我们提出了在商用WiFi平台上完整的多跳TDMA MAC LiT MAC的实现。我们使用微基准测试以及应用级性能(使用室外和室内测试台)进行广泛的评估。我们还提出了LiT MAC与各种路由度量的集成,以及最近提出的路由度量(ROMA,SLIQ)的路由稳定性研究。我们的结果表明,我们可以在多个跃点上实现$(rm mu s)$粒度时间同步,并且TDMA时隙大小可小至2 ms。这些意味着较低的控制开销。在我们的九节点户外测试床上进行了几天的实验,结果表明,即使在存在重大外部干扰的情况下,LiT MAC的基于软状态的方法也可以有效地实现稳健运行。

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