Arrival-time detection with histogram distance for acoustic emission signals

Zhensheng Yang, Handong Xu, Bang-ping Gu
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Abstract

Arrival-time picking is a fundamental step in time-of-arrival (TOA)-based localisation in current and future acoustic emission (AE), microseismic and seismic localisation systems. The accurate detection of TOA is of great importance for high localisation accuracy. This work presents a histogram distance-based method for TOA detection of elastic wave signals. The authors treat an original elastic waveform that includes the arrival as two different locally stationary segments, namely the intervals following and preceding arrival. To determine the optimal separation of these two stationary segments, ie the arrival time, histograms of these intervals are calculated and a measure of the distance between them modified from the Bhattacharyya coefficient is proposed. The performance of the proposed method is evaluated using TOA picking for AE. The method is shown to provide accurate and robust picks on AE signals under various signal-to-noise ratios. To evaluate the adaptability of the method to other TOA picking scenarios, it is applied to detect the seismic P-phase. The detection accuracy is adequate and errors are constrained to within a few seconds. Factors that influence the detection accuracy are discussed. The results suggest that the proposed method has the potential to detect TOA in various fields.
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基于直方图距离的声发射信号到达时间检测
在当前和未来的声发射(AE)、微地震和地震定位系统中,到达时间拾取是基于到达时间(TOA)的定位的基本步骤。准确检测TOA对提高定位精度具有重要意义。本文提出了一种基于直方图距离的弹性波信号TOA检测方法。作者将包含到达的原始弹性波形视为两个不同的局部平稳段,即到达后和到达前的间隔。为了确定这两个平稳段的最佳间隔,即到达时间,计算了这些间隔的直方图,并提出了一种由Bhattacharyya系数修正的它们之间距离的度量。通过对声发射进行TOA挑选,对所提方法的性能进行了评价。结果表明,该方法对不同信噪比下的声发射信号具有准确和鲁棒性。为了评估该方法对其他TOA提取场景的适应性,将其应用于地震p相的检测。检测精度高,误差控制在几秒以内。讨论了影响检测精度的因素。结果表明,该方法具有在各个领域检测TOA的潜力。
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