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Use of a zero-crossing matching algorithm for leak detection in buried water pipes

机译:埋伏水管泄漏检测零交叉匹配算法

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Water leakage from underground pipe networks has been a major concern due to the environmental damage and economic losses. Acoustic techniques based on cross-correlation are now in common use for water leak detection in many countries. This paper presents a zero-crossing matching (ZCM) algorithm for time delay estimation (TDE) to locate a leak from buried water pipes. Theoretical analysis has been performed on simulated signals from which the time delay is further determined. It is found that the accuracy of the time delay estimate is affected by the selection of the window length and the maximum time lag. The ZCM algorithm is then applied to leak signal measurements made in an actual PVC water pipe and the effectiveness of the proposed TDE method is evaluated. In comparison with the conventional cross-correlation method, the algorithm has shown the advantage for ease of computation without loss of accuracy, which proves to be suited to this particular application.
机译:由于环境损害和经济损失,地下管道网络的漏水一直是主要关注。基于交叉相关的声学技术现在在许多国家中的漏水检测常用。本文介绍了用于时间延迟估计(TDE)的零交叉匹配(ZCM)算法,以定位埋入水管的泄漏。已经对进一步确定时间延迟的模拟信号进行了理论分析。发现时间延迟估计的准确性受到窗口长度和最大时间滞后的选择的影响。然后将ZCM算法应用于在实际PVC水管中进行的泄漏信号测量,并评估所提出的TDE方法的有效性。与传统的互相关方法相比,该算法表明了易于计算的优点,而不会损失精度,这被证明是适合该特定应用。

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