Time synchronization and reach-back communications with pulse-coupled oscillators for UWB wireless ad hoc networks

Y. Hong, A. Scaglione
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引用次数: 50

Abstract

Time synchronization has been an extremely difficult issue for wireless ad hoc networks due to its decentralized nature. Interestingly, synchrony have often been observed in swarms of biological systems such as that of synchronous flashing fireflies or spiking of neurons. In this paper, we utilize the narrow pulse characteristics of UWB systems to emulate the pulse-coupled integrate-and-fire (IF) model embedded in biological swarms in order to achieve distributed synchronization. The method is based on a simple transmission strategy where nodes integrate the coupling caused by the signal pulses received from other nodes, and fire a pulse after reaching a designated threshold. With time synchronization, many cooperative strategies can be applied to the network of distributed nodes. In particular, we show that synchronization can lead to coherent superposition of the signal pulses and it would allow to utilize the network as a distributed antenna array capable of reaching far receivers, solving the so called reach-back problem.
超宽带无线自组织网络脉冲耦合振荡器的时间同步和后伸通信
由于无线自组织网络的分散性,时间同步一直是一个极其困难的问题。有趣的是,同步性经常在生物系统的群体中被观察到,比如同步闪烁的萤火虫或神经元的尖峰。在本文中,我们利用超宽带系统的窄脉冲特性来模拟嵌入在生物群中的脉冲耦合集火(IF)模型,以实现分布式同步。该方法基于一种简单的传输策略,节点将从其他节点接收到的信号脉冲所引起的耦合整合在一起,并在达到指定阈值后发射脉冲。在时间同步的情况下,分布式节点网络可以采用多种协同策略。特别是,我们表明同步可以导致信号脉冲的相干叠加,并且它将允许利用网络作为能够到达远接收器的分布式天线阵列,解决所谓的后伸问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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