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首页> 外文期刊>IEEE transactions on industrial informatics >Adaptive Synchronization in IEEE802.15.4e Networks
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Adaptive Synchronization in IEEE802.15.4e Networks

机译:IEEE802.15.4e网络中的自适应同步

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Industrial low-power wireless mesh networks are shifting towards time-synchronized medium access control (MAC) protocols which are able to yield over 99.9% end-to-end reliability and radio duty cycles well below 1%. In these networks, motes use time slots to communicate, and neighbor motes maintain their clocks' alignment, typically within 1 ms. Temperature, supply voltage, and fabrication differences cause the motes' clocks to drift with respect to one another. Neighbor motes need to re-synchronize periodically through pairwise communication. This period is typically determined a priori, based on the worst case drift. In this paper, we propose a novel technique which measures and models the relative clock drift between neighbor motes, thereby reducing the effective drift rate. Instead of resynchronizing at a preset rate, neighbor motes resynchronize only when needed. This reduces the minimum achievable duty cycle of an idle network by a factor of 10, which in turn lowers the mote power consumption and extends the network lifetime. This Adaptive Synchronization is implemented as part of IEEE802.15.4e in the OpenWSN protocol stack and is validated through extensive experimentation.
机译:工业低功耗无线网状网络正在向时间同步媒体访问控制(MAC)协议转变,该协议能够产生99.9%以上的端到端可靠性和远远低于1%的无线电占空比。在这些网络中,节点使用时隙进行通信,并且相邻节点通常在1 ms内保持其时钟对齐。温度,电源电压和制造差异会导致微粒的时钟相对于彼此漂移。邻居节点需要通过成对通信定期重新同步。通常根据最坏情况的漂移先验确定该时间段。在本文中,我们提出了一种新技术,该技术可以测量和建模相邻节点之间的相对时钟漂移,从而降低有效漂移率。邻居节点仅在需要时才重新同步,而不是以预设速率重新同步。这将空闲网络的最小可实现占空比降低了10倍,进而降低了微功耗并延长了网络寿命。这种自适应同步是作为OpenWSN协议栈中的IEEE802.15.4e的一部分实现的,并通过大量的实验进行了验证。

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