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Hands on IRIS: Lessons learned from implementing a cross layer protocol stack for WSNs

机译:动手IRIS:从为WSN实施跨层协议栈中学到的经验教训

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This paper describes the challenges behind the implementation of a full cross-layer protocol stack for wireless sensor networks. Our solution, IRIS, integrates interest dissemination and convergecasting, adaptive duty cycle and data fusion. The interest dissemination protocol is used for task assignment and to build and maintain the network topology, while convergecasting implements data gathering at the network sink. Convergecasting heavily exploits cross layering in that MAC and routing operations are performed jointly and relay selection is based on flexible cost functions that take into account information from different layers. We have implemented and tested IRIS on two different testbeds, in a controlled lab scenario and in a building with Wi-Fi interference. The flexibility introduced by the IRIS cross layer approach results in higher robustness and reliability than that of well-known approaches such as BoX-MAC combined with the CTP protocol. IRIS delivers more than 95% of packets while other approaches have packet delivery ratios as low as 87% and are not as scalable with traffic. IRIS is also able to support timely and robust delivery of data with duty cycles as low as 5%.
机译:本文描述了为无线传感器网络实现完整的跨层协议栈背后的挑战。我们的解决方案IRIS集成了兴趣传播和聚合广播,自适应占空比和数据融合。兴趣分发协议用于任务分配以及构建和维护网络拓扑,而聚合广播则在网络接收器处实现数据收集。聚合广播大量利用交叉分层,因为MAC和路由操作是联合执行的,并且中继选择基于灵活的成本函数,该函数考虑了来自不同层的信息。我们已经在两个不同的测试台上,在受控实验室场景中以及在具有Wi-Fi干扰的建筑物中实施并测试了IRIS。与诸如BoX-MAC和CTP协议等众所周知的方法相比,IRIS跨层方法引入的灵活性导致更高的鲁棒性和可靠性。 IRIS交付的数据包超过95%,而其他方法的数据包交付率则低至87%,并且不能随流量扩展。 IRIS还能够以低至5%的占空比支持及时,强大的数据传输。

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