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Analyzing multi-variate water quality signals for water quality monitoring station placement in water distribution systems

机译:分析多变量水质信号以在供水系统中放置水质监测站

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Placing fixed water quality monitoring stations in a water distribution system can greatly improve the security of the system via prompt detection of poor water quality. In the event that a harmful substance is injected into a water distribution system, large populations can be put at risk of exposure to the contaminant. Promptly detecting the presence of a contaminant will reduce the number of people put at risk of exposure. However, to protect against a wide variety of possible contaminants, a water quality monitoring station will need to identify contamination via recognition of anomalous changes in a suite of surrogate water quality indicators (chlorine, pH, etc.). This work attempts to place water quality monitoring stations within the water distribution at locations that best detect contamination events via surrogate water quality signals. Networks of water quality monitoring stations are designed to minimize the population affected prior to contamination event detection, and simultaneously minimize the expected number of false positive detections, under uncertain water quality conditions. Solutions generated in this study are compared to solutions designed via classical detection methods. Results show the sensor networks designed without consideration to detection via surrogate water quality parameters have higher false positive detection rates.
机译:在水分配系统中放置固定的水质监测站可以通过迅速检测不良的水质来大大提高系统的安全性。如果将有害物质注入给水分配系统,则可能使大量人口面临暴露于污染物的风险。及时检测污染物的存在将减少面临暴露风险的人数。但是,为了防止各种可能的污染物,水质监测站将需要通过识别一组替代水质指标(氯,pH等)中的异常变化来识别污染物。这项工作试图在水分配中的水质监测站中,通过替代水质信号最好地检测出污染事件。水质监测站网络的设计目的是在不确定的水质条件下,将污染事件检测之前受影响的人口降至最低,同时将预期的假阳性检测次数降至最低。将本研究中生成的解决方案与通过经典检测方法设计的解决方案进行比较。结果表明,不考虑通过替代水质参数进行检测而设计的传感器网络具有较高的假阳性检测率。

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