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In situ detection of water quality contamination events based on signal complexity analysis using online ultraviolet-visible spectral sensor

机译:基于信号复杂性分析使用在线紫外 - 可见光谱传感器的水质污染事件原位检测

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摘要

The contaminant detection in water distribution systems is essential to protect public health from potentially harmful compounds resulting from accidental spills or intentional releases. As a noninvasive optical technique, ultraviolet-visible (UV-Vis) spectroscopy is investigated for detecting contamination events. However, current methods for event detection exhibit the shortcomings of noise susceptibility. In this paper, a new method that has less sensitivity to noise was proposed to detect water quality contamination events by analyzing the complexity of the UV-Vis spectrum series. The proposed method applied approximate entropy (ApEn) to measure spectrum signals' complexity, which made a distinction between normal and abnormal signals. The impact of noise was attenuated with the help of ApEn's insensitivity to signal disturbance. This method was tested on a real water distribution system data set with various concentration simulation events. Results from the experiment and analysis show that the proposed method has a good performance on noise tolerance and provides a better detection result compared with the autoregressive model and sequential probability ratio test. (C) 2017 Optical Society of America
机译:水分配系统中的污染物检测对于免受意外溢出或故意释放的潜在有害化合物来保护公共卫生至关重要。作为非侵入性光学技术,研究了用于检测污染事件的紫外线可见(UV-VI)光谱。然而,目前的事件检测方法表现出噪声易感性的缺点。在本文中,提出了一种对噪声敏感性较小的新方法来检测水质污染事件,分析UV-Vis谱系列的复杂性。所提出的方法施加近似熵(APEN)来测量频谱信号的复杂性,这使得正常和异常信号之间的区别。借助APEN对信号干扰的不敏感,噪音的影响是衰减的。在具有各种浓度模拟事件的真实配水系统数据集上测试该方法。实验和分析结果表明,该方法对噪声容差具有良好的性能,并提供了与自回归模型和顺序概率比测试相比的更好的检测结果。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第22期|共7页
  • 作者单位

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

    Zhejiang Univ Dept Control Sci &

    Engn State Key Lab Ind Control Technol Hangzhou 310027 Peoples R China;

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