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首页> 外文期刊>Journal of Water Resources Planning and Management >Monitoring Design for Source Identification in Water Distribution Systems
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Monitoring Design for Source Identification in Water Distribution Systems

机译:供水系统中水源识别的监控设计

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摘要

The design of sensor networks for monitoring contaminants in water distribution systems is currently an active area of research. Much of the effort has been directed at the contamination detection problem and the expression of public health protection objectives. Monitoring networks once they are in place, however, are likely to be used to gather monitoring data for source inversion as well. Thus, the design of these networks with the unique objectives associated with source inversion problems in mind is a necessity. Source inversion problems in water distribution systems are inherently underdetermined and exhibit solution nonuniqueness; and more-over, the structure of the errors associated with a solution are a function of monitoring observations. Optimal inverse experiment design is investigated as an approach for improving solution quality. The approach involves the selection of monitoring locations that are best suited to the generation of a well-conditioned source identification inverse problem. The monitoring design problem is formulated as a nonlinear combinatorial optimization problem and solved using a genetic algorithm. The monitoring designs generated exhibit an optimal substructure that may be exploited to develop more efficient methods of solution. An analysis is conducted to evaluate the source inversion performance of an optimized monitoring network relative to networks designed using different methods. The results of the analysis demonstrate that when the source identification problem is underdetermined, the number of monitoring sensors installed in the network is more important than the method used to locate them.
机译:用于监视供水系统中污染物的传感器网络的设计是当前研究的活跃领域。许多努力都针对污染检测问题和公共卫生保护目标的表达。但是,一旦建立了监视网络,它们很可能也将用于收集监视数据以进行源倒置。因此,在设计这些网络时必须考虑与源反转问题相关的独特目标。供水系统中的源反演问题本质上是不确定的,并且表现出解决方案的非唯一性。而且,与解决方案相关的错误的结构是监视观测值的功能。研究了最佳逆实验设计,以提高解决方案质量。该方法涉及选择最适合产生条件良好的源识别反问题的监视位置。将监视设计问题表述为非线性组合优化问题,并使用遗传算法进行求解。生成的监视设计具有最佳的子结构,可用于开发更有效的解决方案。进行分析以相对于使用不同方法设计的网络来评估优化监控网络的源反演性能。分析结果表明,当不确定源识别问题时,网络中安装的监视传感器的数量比用于定位它们的方法更为重要。

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