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In Situ Detection of Water Quality Contamination Events Based on Signal Complexity Analysis Using Online Ultraviolet-visible Spectral Sensor by Pingjie Huang; Ke Wang; Dibo Hou; Jian Zhang; Jie Yu; Guangxin Zhang is a Engineering article available to read on EtoBox.
What is In Situ Detection of Water Quality Contamination Events Based on Signal Complexity Analysis Using Online Ultraviolet-visible Spectral Sensor about?
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.
Who reads In Situ Detection of Water Quality Contamination Events Based on Signal Complexity Analysis Using Online Ultraviolet-visible Spectral Sensor?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Pingjie Huang; Ke Wang; Dibo Hou; Jian Zhang; Jie Yu; Guangxin Zhang
- Publisher
- The Optical Society; Optical Society of America (ISSN 1559-128X)
- Published
- 2017
- Language
- EN
- Field
- Engineering (Physical Sciences)
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