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Keep the Beat: On-The-Fly Clock Offset Compensation for Synchronous Transmissions in Low-Power Networks

机译:保持节奏:低功耗网络中同步传输的实时时钟偏移补偿

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Emerging protocols for low-power wireless networks increasingly exploit constructive interference and the capture effect. The basic idea is that the synchronous transmission of identical packets by neighboring nodes leads to constructive interference - or at least do not cause destructive interference. This requires that the temporal displacement of packets at receiving nodes is lower than 0.5 μs when employing IEEE 802.15.4 radios. However, commonly used sensor nodes are equipped with cheap and imprecise clocks that show high frequency deviations across nodes, making constructive interference difficult to achieve. Such deviations further increase when individual nodes are exposed to different temperatures. In this paper we introduce Flock, a novel approach to compensate for differences in clock frequency across synchronously transmitting nodes. We implemented Flock in Contiki on the example of Glossy, a flooding protocol based on synchronous transmissions. Our results confirm that Flock can achieve constructive interference on real sensor nodes in over 98% of the cases. Overall, Flock makes protocols that exploit synchronous transmissions more robust to operate even in challenging environments.
机译:用于低功率无线网络的新兴协议越来越多地利用建设性干扰和捕获效应。基本思想是相邻节点对相同数据包的同步传输会导致相长干扰-或至少不会造成相长干扰。这就要求在采用IEEE 802.15.4无线电时,接收节点上数据包的时间位移必须小于0.5μs。但是,常用的传感器节点配备了便宜且不精确的时钟,这些时钟在节点之间显示出高频偏差,从而难以实现相长干涉。当各个节点暴露于不同温度时,这种偏差会进一步增加。在本文中,我们介绍了Flock,这是一种用于补偿同步传输节点之间时钟频率差异的新颖方法。我们以Glossy为例,在Contiki中实现了Flock,Glossy是一种基于同步传输的泛洪协议。我们的结果证实,在超过98%的情况下,Flock可以对真实的传感器节点产生相长干扰。总体而言,Flock使利用同步传输的协议即使在具有挑战性的环境中也更加健壮。

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