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A first arrival identification system of acoustic emission (AE) signals by means of a high-order statistics approach

机译:借助高阶统计方法的声发射(AE)信号的首次到达识别系统

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摘要

One of the fundamental problems in non-destructive testing and geophysics is the precise determination of the first arrival of acoustic emission (AE) signals (or seismic signals) recorded by multi-channel systems. The knowledge of this time is very important, mainly in the case of automatic localization of individual AE events. Several approaches are routinely used in practice such as crossing of the threshold level, analysis of the LTA/STA (long-time average/short-time average), etc. In our paper, an approach based on high-order statistics (HOS) that is able to carry out precise arrival time determination without human intervention is presented. The approach was tested on real AE data recorded by an eight-channel recording system. This simple, accurate and quite fast method is predetermined to be used in automatic processing of transient waveform data from acoustic emission, seismic signals, ultrasonic sounding, etc.
机译:无损检测和地球物理学的基本问题之一是精确确定多通道系统记录的声发射(AE)信号(或地震信号)的首次到达。这段时间的知识非常重要,主要是在自动定位单个AE事件的情况下。在实践中通常使用几种方法,例如越过阈值水平,分析LTA / STA(长期平均/短期平均)等。在本文中,基于高阶统计量(HOS)的方法提出了一种无需人工干预即可准确确定到达时间的方法。该方法已在由八通道记录系统记录的真实AE数据上进行了测试。这种简单,准确且相当快速的方法预定用于自动处理来自声发射,地震信号,超声波探测等的瞬态波形数据。

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