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Measuring imperfections of water quality sensors in water distribution networks

机译:测量水分配电网络中水质传感器的缺陷

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摘要

Water distribution networks (WDNs) are critical to provide safe, clean drinking water around the globe. However, they are susceptible to accidental or deliberate contamination, potentially resulting in poisoned water, many fatalities and large economic consequences. In order to protect against such intrusions, an efficient sensor network should be placed in a WDN. Finding the optimal placement for water quality sensors is a challenging problem. Several sensor placement strategies have been proposed, but the vast majority of these strategies rely on the assumption that the sensors are perfect. In this paper we provide evidence for the imperfection of water quality sensors, by conducting measurements in an operational environment. We investigate the imperfection of four types of water quality sensors being employed in actual WDNs for the purpose of contamination detection. We describe experiments conducted at the WaDi testbed, a realistic water distribution facility at the Singapore University of Technology and Design. Through these experiments we study the imperfection, sensitivity and degradation of the water quality sensors, under normal conditions (water flow without contaminants present) as well as under attack conditions. It is shown that several aspects of sensor imperfection do occur, including missing values, inexplicable jumps and drifting.
机译:水分配网络(WDN)对于在全球提供安全,清洁饮用水的安全性至关重要。然而,它们易于意外或蓄意污染,可能导致中毒水,许多死亡和巨大的经济后果。为了防止这种入侵,应该将有效的传感器网络放置在WDN中。寻找水质传感器的最佳放置是一个具有挑战性的问题。已经提出了几种传感器放置策略,但绝大多数这些策略依赖于传感器是完美的假设。在本文中,我们通过在运营环境中进行测量来提供水质传感器的缺陷的证据。我们研究了在实际WDN中使用的四种类型的水质传感器的不完美,以污染检测。我们描述了在新加坡技术和设计大学的现实水分配设施在Wadi试验机制进行的实验。通过这些实验,我们在正常条件下研究了水质传感器的缺陷,灵敏度和降解,水流没有污染物的存在)以及攻击条件。结果表明,发生传感器缺陷的几个方面,包括缺失值,莫名跳跃和漂移。

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