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Opportunistic Routing in Low Duty-Cycle Wireless Sensor Networks

机译:低占空比无线传感器网络中的机会路由

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Opportunistic routing is widely known to have substantially better performance than unicast routing in wireless networks with lossy links. However, wireless sensor networks are usually duty cycled, that is, they frequently enter sleep states to ensure long network lifetime. This renders existing opportunistic routing schemes impractical, as they assume that nodes are always awake and can overhear other transmissions. In this article we introduce ORW, a practical opportunistic routing scheme for wireless sensor networks. ORW uses a novel opportunistic routing metric, EDC, that reflects the expected number of duty-cycled wakeups that are required to successfully deliver a packet from source to destination. We devise distributed algorithms that find the EDC-optimal forwarding and demonstrate using analytical performance models and simulations that EDC-based opportunistic routing results in significantly reduced delay and improved energy efficiency compared to traditional unicast routing. In addition, we evaluate the performance of ORW in both simulations and testbed-based experiments. Our results show that ORW reduces radio duty cycles on average by 50% (up to 90% on individual nodes) and delays by 30% to 90% when compared to the state-of-the-art.
机译:广为人知的机会路由在具有损耗链路的无线网络中比单播路由具有更好的性能。但是,无线传感器网络通常具有占空比,也就是说,它们经常进入睡眠状态以确保较长的网络寿命。这使现有的机会路由方案不切实际,因为它们假定节点始终处于唤醒状态并且可以监听其他传输。在本文中,我们介绍ORW,这是一种用于无线传感器网络的实用机会路由方案。 ORW使用新颖的机会路由度量标准EDC,该度量标准反映了成功地将数据包从源传递到目标所需的占空比唤醒的预期数量。我们设计了可找到EDC最佳转发的分布式算法,并使用分析性能模型和仿真进行了演示,与传统单播路由相比,基于EDC的机会路由可显着减少延迟并提高能源效率。此外,我们在仿真和基于试验台的实验中评估ORW的性能。我们的结果表明,与最新技术相比,ORW可使无线电占空比平均减少50%(在单个节点上最多减少90%),并将延迟减少30%至90%。

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