利用高阶频谱分析确定声源位置,估计声源到达时间

P Ivan Pokrajac, Miodrag S. Vračar, Tamara Šević, Vasilija J. Joksimović
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引用次数: 1

摘要

如今,战场上各种声源(如武器弹药、迫击炮、火箭、地雷、简易爆炸装置、车载简易爆炸装置和机载车辆)的定位已经有了重要的历史。在多传感器的声源定位系统中,通过联网和放置在已知位置来检测声源发出的信号并对声源进行定位。以火炮定位为目的,对火炮大距离射击冲击波的到达时间估计具有重要意义。在距离较远的地方,激波信号变形明显,因此很难准确估计到达时间。本文提出了一种基于远距离射击声信号累积量的TOA估计方法。通过声信号到达的时间差估计和离散概率密度法进行定位,分两步对声源进行定位。为了验证所提出的方法的性能,已经进行了大量的现场实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Position determination of acoustic source using higher-order spectral analysis for time of arrival estimation
The localization of various acoustic sources in a battlefield (such as weapon rounds, mortars, rockets, mines, improvised explosive devices, vehicle-borne improvised explosive devices and airborne vehicles) nowadays has a significant history. In acoustic source localization systems of multiple sensors, networked and placed at known positions are used to detect signals emitted from the source and perform localization of the source. Time of arrival estimation of the gun fire shock waves at large distances is significant when the purpose is the gun localization. At large distances shock wave signal is significantly deformed and therefore it is relatively difficult to accurately estimate the time of arrival. In this paper methods for TOA estimation are proposed, which are based on cumulants of the acoustic signal which originate from distant gunfire events. Localization of acoustic sources is performed in two steps by time difference estimation of acoustic signal arrival and using Discrete Probability Density method for positioning. Numerous field experiments have been conducted in order to verify performance of the proposed approach.
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