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Optimal sensor locations for contamination detection in pressure-deficient water distribution networks using genetic algorithm

机译:利用遗传算法在缺水供水网络中检测污染物的最佳传感器位置

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摘要

A new sensor placement problem is formulated to cover two objectives of: (1) assuring quality of water delivered to consumers; and (2) detection of any contamination event at the earliest so as to minimize its consequences, through maximization of: (1) demand coverage; and (2) time-constrained detection likelihood for pressure deficient networks. The network may become pressure-deficient owing to continued use of water distribution network beyond its design life. The two objectives are combined using weights. Genetic algorithm is used to obtain optimum sensor locations. The methodology is applied to a pressure- deficient network in the Dharampeth zone of Nagpur city (India). The pressure- dependent analysis is carried out using WaterGem v8i to simulate the system hydraulics. Performance objectives are evaluated considering the availability of flows at nodes and velocity of flow in pipes under pressure-deficient conditions. Comparison of optimal sensor network design is carried out with that obtained by demand-dependent analysis.
机译:提出了一个新的传感器放置问题,以解决两个目标:(1)确保输送给消费者的水的质量; (2)尽最大可能通过以下方式尽早发现任何污染事件,从而将其后果降到最低:(1)需求范围; (2)压力不足网络的时间受限检测可能性。由于在设计寿命之外继续使用配水管网,该管网可能压力不足。这两个目标是使用权重合并在一起的。遗传算法用于获得最佳传感器位置。该方法已应用于印度那格浦尔市Dharampeth地区的压力不足网络。使用WaterGem v8i进行压力相关的分析,以模拟系统液压系统。评估性能目标时要考虑压力不足条件下节点处的可用性和管道中的流速。将最佳传感器网络设计与通过需求相关分析获得的传感器网络设计进行比较。

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