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RAWMAC: A routing aware wave-based MAC protocol for WSNs

机译:RAWMAC:WSN的基于路由的基于通知的MAC协议

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摘要

In Wireless Sensor Networks (WSNs) for monitoring applications, energy saving and fast data collection are two challenging tasks. Asynchronous radio duty cycling protocols can achieve very low energy consumption in low traffic conditions and they are fault-tolerant to clock drifts. However, they may exhibit a delay degradation due to the decoupled wake-up periods of the nodes. In this paper, we present RAWMAC, a cross-layer approach where RPL, a tree-based routing protocol, orchestrates the asynchronous duty-cycled ContikiMAC MAC layer. The wake-up instants of the nodes are dynamically aligned, with respect to the RPL topology, to minimize the delay for data collection. We implement RAWMAC for the Contiki operating system and we analyze the impact of several key system parameters. Results show that RAWMAC outperforms ContikiMAC in terms of delay for data collection, while keeping the same performance in terms of throughput and energy consumption.
机译:在用于监视应用程序的无线传感器网络(WSN)中,节能和快速数据收集是两项具有挑战性的任务。异步无线电占空比循环协议可以在低流量条件下实现非常低的能耗,并且它们对时钟漂移具有容错能力。但是,由于节点的唤醒周期解耦,它们可能会显示延迟降级。在本文中,我们介绍了RAWMAC,这是一种跨层方法,其中RPL(基于树的路由协议)协调异步占空比的ContikiMAC MAC层。节点的唤醒时刻相对于RPL拓扑动态对齐,以最大程度地减少数据收集的延迟。我们为Contiki操作系统实现RAWMAC,并分析了几个关键系统参数的影响。结果表明,RAWMAC在数据收集延迟方面优于ContikiMAC,同时在吞吐量和能耗方面保持相同的性能。

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