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PulseSS: A Pulse-Coupled Synchronization and Scheduling Protocol for Clustered Wireless Sensor Networks

机译:PulseSS:集群无线传感器网络的脉冲耦合同步和调度协议

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摘要

The pulse-coupled synchronization and scheduling (PulseSS) protocol is proposed in this paper for simultaneous synchronization and scheduling of communication activities in clustered wireless sensor networks (WSNs), by emulating the emergent behavior of pulse-coupled oscillator (PCO) networks in mathematical biology. Different from existing works that address synchronization and scheduling (i.e., desynchronization) separately, PulseSS provides a coordination signaling mechanism that achieves decentralized network synchronization and time division multiple access scheduling simultaneously at different time scales for clustered WSNs. Here, we assume that the nodes are connected only locally via their respective cluster heads. Moreover, PulseSS addresses the issue of propagation delays, that may plague the accuracy of PCO synchronization in practice, by providing ways to estimate and precompensate for these values locally at the sensors (i.e., PCOs). At the same time the protocol retains the adaptivity and light-weight nature of PCO protocols both in terms of signaling and computations. Simulations of both physical and medium access control layers show a synchronization accuracy of factions of microseconds above 15 dB of signal to interference and noise ratio for a five cluster network. A hardware implementation of PulseSS using TinyOS is also provided to corroborate the real world applicability of our protocol.
机译:通过模拟数学生物学中脉冲耦合振荡器(PCO)网络的出现行为,提出了脉冲耦合同步与调度(PulseSS)协议,用于集群无线传感器网络(WSNs)中通信活动的同步和调度。 。与现有的分别解决同步和调度(即失步)的工作不同,PulseSS提供了一种协调信令机制,该机制可实现分布式WSN的分散网络同步和时分多址同时调度。在这里,我们假设节点仅通过它们各自的簇头在本地连接。此外,PulseSS通过提供在传感器(即,PCO)局部估计和预补偿这些值的方式,解决了传播延迟的问题,该问题实际上可能困扰PCO同步。同时,该协议在信令和计算方面都保留了PCO协议的适应性和轻量性。物理访问控制层和介质访问控制层的仿真都表明,对于五个集群网络,在15 dB的信号干扰和噪声比之上,微秒级的同步精度。还提供了使用TinyOS的PulseSS的硬件实现,以证实我们的协议在现实世界中的适用性。

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