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Reducing System Wide Event Detection False Positive Alerts by Using Reversed Hydraulic Simulation

机译:反向液压仿真减少系统范围的事件检测误报

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The EPA's Water Quality Event Detection Challenge evaluated five event detection systems (EDS) with real world water quality monitoring data. The findings are that, on average, there are about one false positive alert per day per monitoring station. Other publications supports these findings. A real world municipal water distribution system (WDS) may consist of tens of monitoring stations resulting in a large number of false positive alerts thus making the system wide EDS unpractical from the WDS operator point of view. This paper presents a new approach for reducing false positive alerts by using alerts raised from more than one monitoring station at different times. First, the methodology uses the reversed hydraulic simulation method which allows to identify the possible time-locations pairs where contamination injection could explain each monitor's. Then, using the super-position method, the time-location pairs where contamination injection could explain all monitors alerts are found. In the next step a tracer injection simulation is performed for each time-location pair in order to validate that the tracer should not have triggered an alert in a non-alerting monitoring station or did not arrive before the alert for an alerting monitoring station. If such time-location pairs are found the alerts are suspected to be false positive. The method is demonstrated on a small water distribution system model.
机译:EPA的水质事件检测挑战赛使用实际的水质监测数据评估了五个事件检测系统(EDS)。调查结果是,平均每个监控站每天约有一次假阳性警报。其他出版物也支持这些发现。现实世界的市政给水系统(WDS)可能由数十个监视站组成,导致大量的误报警报,因此,从WDS操作员的角度来看,整个系统的EDS都不切实际。本文提出了一种通过使用不同时间从多个监控站发出的警报来减少误报的新方法。首先,该方法使用反向水力模拟方法,该方法可以确定可能的时间-位置对,其中污染物注入可以解释每个监控器。然后,使用叠加方法,找到了污染物注入可以解释所有监视器警报的时间-位置对。在下一步中,对每个时间-位置对执行示踪剂注入模拟,以验证示踪剂是否应该在非警报监视站中触发了警报或在警报监视站之前没有到达警报。如果找到了这样的时间-位置对,则怀疑警报为误报。在小型供水系统模型上演示了该方法。

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