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Improving the shape of the cross-correlation function for leak detection in a plastic water distribution pipe using acoustic signals

机译:利用声信号改善塑料水分配管中泄漏检测的互相关函数的形状

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摘要

This paper is concerned with time delay estimation for the detection of leaks in buried plastic water pipes using the cross-correlation of leak noise signals. In some circumstances the bandwidth of over which the signal analysis can be conducted is severely restricted because of resonances in the pipe system, which manifest themselves as peaks in the modulus of the power spectral and cross spectral densities, and deviations from straight-line behaviour in the phase of the cross spectral density. The result can be a cross-correlation function in which it is difficult to estimate the time delay accurately. This paper describes a procedure in which the shape of the cross-correlation function can be significantly improved, resulting in an unambiguous and clear estimate of the time delay. The frequency response function(s) of the resonator(s) responsible for the resonance effects are first determined and then the data is processed using the model(s) of the resonators to remove these effects. This enables more signal processing to be conducted, potentially over a much wider bandwidth, further improving the shape of the cross-correlation function. The process is illustrated in this paper using hydrophone measured data at a leak detection facility. The current limitation in the process is that it is carried out manually, which could potentially restrict its application in practical acoustic correlators. The challenge now is to develop an algorithm to carry out the procedure automatically.
机译:本文涉及利用泄漏噪声信号的互相关来检测埋入式塑料水管中泄漏的时延估计。在某些情况下,由于管道系统中的共振而严重限制了可以进行信号分析的带宽,这些共振表现为功率谱模数和交叉谱密度的峰值,以及与谱线中直线行为的偏差。交叉光谱密度的相位。结果可能是互相关函数,其中很难准确估计时间延迟。本文介绍了一种可以显着改善互相关函数形状的过程,从而可以清晰,清晰地估计时间延迟。首先确定引起谐振效应的谐振器的频率响应函数,然后使用谐振器的模型处理数据以消除这些效应。这使得有可能在更大的带宽上进行更多的信号处理,从而进一步改善互相关函数的形状。本文使用泄漏检测设备上的水听器测量数据来说明该过程。该过程中的当前限制是它是手动执行的,这可能会限制其在实际声学相关器中的应用。现在的挑战是开发一种算法来自动执行该程序。

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