基于噪声相位同步现象的自然环境信号无线传感器网络同步

M. Harashima, Hiroyuki Yasuda, M. Hasegawa
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引用次数: 6

摘要

我们证明了无线传感器网络可以通过自然环境信号,如温度、湿度等进行同步。提出的同步方案基于噪声诱导相位同步理论;非线性振子的周期极限环轨道相位通过在振子中加入共同噪声信号来实现同步。基于这一理论,我们通过根据其非线性振荡器的相位调整无线传感器节点的时钟同步,其中自然环境信号作为噪声添加。本文首先对室外布置的ZigBee无线传感器节点测量的自然环境信号的相互关系进行了分析,发现不同传感器节点感知到的信号相互关系在0.8左右或更高。根据这一结果,分析了加性噪声相互间相互关系发生变化时噪声诱导相位同步的可能性,明确了当相互关系在0.8左右或更高时,非线性振子可以同步。最后,我们通过在每个传感器节点上感知到的自然环境信号的实际数据来研究噪声诱导相位同步的可行性,并表明在没有任何相互作用或通信的情况下同步无线传感器节点是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronization of Wireless Sensor Networks Using Natural Environmental Signals Based on Noise-Induced Phase Synchronization Phenomenon
We show that the wireless sensor networks can be synchronized by natural environmental signals, such as temperature, humidity and so on. The proposed synchronization scheme is based on the noise-induced phase synchronization theory; the phases of the periodical limit cycle orbits of nonlinear oscillators synchronize with each other by adding a common noise signal to the oscillators. Based on this theory, we synchronize the clocks of the wireless sensor nodes by tuning them according to the phase of their nonlinear oscillator to which natural environmental signals are added as noise. In this paper, first we analyze cross-correlation of the natural environmental signals measured by ZigBee wireless sensor nodes, which are arranged outdoor at about 20m intervals, and show that the cross- correlation among the signals sensed at different sensor nodes are around 0.8 or higher. According to this result, we analyze possibility of the noise- induced phase synchronization with changing cross- correlation between the additive noises, and clarify that the nonlinear oscillators can be synchronized in the cases that the cross-correlation becomes around 0.8 or higher. Finally, we investigate feasibility of the noise-induced phase synchronization by actual data of natural environmental signals sensed at each sensor node and show it is possible to synchronize wireless sensor nodes without any interactions or communications among them.
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