Distributed array of cooperating acoustic sensors using local time-frequency coherence analysis

C. Ioana, I. Candel, Angela Digulescu-Popescu
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引用次数: 2

Abstract

The distributed array of sensors is an interesting concept in the context of underwater environment monitoring. The signal processing distributed at sensors level has to have a low consumption (much less than the data transmission) and, in the same time, the processing efficiency needs to be satisfactory compared with a processing without any algorithmic complexity constraint. In this paper, we define a network of sensors which individually detect signals of interest based on the concept local time-frequency coherence analysis. This concept consists of estimating, in each analysis window, the local linear frequency modulation that matches the best the analyzed signal. This concept is much less sensitive to the time-varying energy of the signals, providing better detection performances than an energy-based detector. In addition, the sensors are organized in local sub-networks that will provide a joint detection stage. This operation consists in comparing the local time-frequency information obtained by the sensors of the sub-network and if they are the same, at the sub-network level, we decide that the detected signal is a useful one and its parameters has to be sent to the central processing level. This cooperating capability improves the performances as it is proved by the results on real data and quantified in terms of receiving operating characteristics.
基于局地时频相干分析的协同声传感器分布式阵列
在水下环境监测中,分布式传感器阵列是一个有趣的概念。分布在传感器级的信号处理必须具有较低的消耗(远小于数据传输),同时处理效率要比没有任何算法复杂度约束的处理更令人满意。在本文中,我们定义了一个传感器网络,这些传感器网络基于局部时频相干分析的概念,分别检测感兴趣的信号。这个概念包括在每个分析窗口中估计与被分析信号最匹配的本地线性调频。这个概念对信号时变能量的敏感性低得多,提供比基于能量的检测器更好的检测性能。此外,传感器被组织在本地子网络中,将提供联合检测阶段。该操作是将各子网络传感器所获得的本地时频信息进行比较,如果两者相同,则在子网络一级判定检测到的信号是有用的信号,并将其参数发送到中央处理层。通过对实际数据的验证和接收操作特性的量化,提高了系统的性能。
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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