基于ФOTDR光纤传感技术的供水管道泄漏辨识方法
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1.天津大学精密仪器与光电子工程学院天津300072;2.河北省仪器仪表工程技术研究中心承德067000

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TN911.7TH86

基金项目:

国家自然科学青年基金(61304244)、天津市自然科学基金(14JCQNJC04900)、教育部基金(20130032120066)、承德高新技术产业开发区创新基金(201421)、河北省科技计划(159676100D)项目资助


Study on leakage identification method of water supply pipeline based on ФOTDR optical fiber sensing technology
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1. School of Precision Instrument and OptoElectronics Engineering,Tianjin University,Tianjin 300072, China; 2. Instrumentation Engineering Technology Research Center of the Hebei Province, Chengde 067000, China

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    摘要:

    由于城市供水管道周边工况复杂,如何实现对不同工况的泄漏及其他干扰振动的模式识别成为系统的关键技术。提出了采用分形盒维数和改进近似熵作为特征量的基于相位敏感的时域反射计(ФOTDR)分布式光纤传感进行供水管道振动检测的方法。根据泄漏孔附近空泡噪声的信号空间填充度特征,引入分形盒维数对时域信号进行度量,采用了一种新的寻找无标度区的办法,使得出的盒维数参数值能够把握过电平率很高信号的特定特征根据湍流噪声信号混沌性特征;根据湍流噪声的混沌特性,引入近似熵复杂度对时域信号进行度量,采用了一种新的相似容限选取方法,使得更能体现信号随机性的大小。将去噪处理后检测信号的分形盒维数和改进近似熵同时作为二维参数平面的两个输入,通过在该平面设置阈值范围辨识管道泄漏信号,用以区分泄漏信号和干扰信号。对实验信号进行处理,使用该方法对泄漏辨识的准确率能达到96.7%,结果表明,采用该方法能够准确、高效地区分将供水管道泄漏信号及其他信号。

    Abstract:

    Due to the complex working conditions around the city water supply pipeline, it is difficult to achieve pattern recognition on leakage and other interference vibration. This study proposes a method to identify leakage vibration detection by utilizing the ФOTDR distributed optical fiber sensor based on fractal box dimension and improved approximate entropy. According to the signal space filling feature of cavitation noise near the leakage, the time domain signal is measured by the fractal box dimension. A new scalefree zone searching method is adopted. Then, the value of the box dimension parameters can be obtained by the high feature of the signal according to the turbulence noise signal chaotic characteristics. According to the turbulence noise signal chaotic characteristics, the approximate entropy is employed to measure the timedomain signal. A new method of selecting a similar margin is used. Hence, the improved approximate entropy can reflect the randomness of signals. The fractal box dimension and improved approximate entropy of denoised signal are utilized as the input of the twodimensional parameter plane. By setting the threshold range in the plane, the distinction between the leakage signals and interfering signals can be realized. By processing signals detected in experiments using this method, the results show that the accuracy rate of leakage recognition can reach up to 96.7%, which indicates that this method can separate water pipeline leakage signals and other signals accurately and efficiently.

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王大伟,封皓,杨洋,沙洲,曾周末.基于ФOTDR光纤传感技术的供水管道泄漏辨识方法[J].仪器仪表学报,2017,38(4):830-837

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  • 在线发布日期: 2017-07-19
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