Improved community detection for WDN partitioning in the dual topology based on segments and valves

IF 2.2 3区 工程技术 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
E. Creaco, C. Giudicianni, Amirabbas Mottahedin
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引用次数: 1

Abstract

This paper proposes a formulation of modularity tailored to the dual water distribution network (WDN) topology based on segments and valves, to be conveniently adopted for the partitioning into district-metered areas (DMAs). Notably, it allows considering both properties to be made uniform across DMAs, such as water demand or total pipe length, and properties to be made uniform inside each DMA, such as nodal ground elevations or pipe age for the sake of pressure regulation or maintenance easiness, respectively. This paper also proposes a new algorithm for the identification of the optimal clustering of WDN segments into any desired number of DMAs. Taking as a starting point any WDN clustering solution, i.e., the solution obtained with Newman's fast algorithm for community detection, the novel algorithm operates by exploring changes in the community of belonging to segments lying in the boundary between adjacent communities, by applying an optimization inspired by the simulated annealing technique. The applications of the novel modularity formulation and optimization algorithm to two case studies yield well-performing clustering solutions in terms of engineering judgment criteria, such as the low number of inter-DMA boundary pipes, uniformity of DMAs and hydraulic performance.
改进了基于段和阀的双拓扑结构中WDN划分的社区检测
本文提出了一种模块化的公式,该公式适用于基于分段和阀门的双配水网络(WDN)拓扑结构,可方便地用于划分区域计量区(DMA)。值得注意的是,为了便于压力调节或维护,它允许考虑使DMA之间的特性(如需水量或管道总长度)和使每个DMA内部的特性(例如节点地面高程或管道使用年限)一致。本文还提出了一种新的算法,用于识别WDN段到任何期望数量的DMA的最优聚类。以任何WDN聚类解决方案,即用Newman快速算法获得的社区检测解决方案为出发点,新算法通过应用模拟退火技术启发的优化,探索属于位于相邻社区之间边界的片段的社区的变化。新的模块化公式和优化算法在两个案例研究中的应用,在工程判断标准方面产生了性能良好的聚类解决方案,如DMA间边界管道的数量少、DMA的均匀性和水力性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Hydroinformatics
Journal of Hydroinformatics 工程技术-工程:土木
CiteScore
4.80
自引率
3.70%
发文量
59
审稿时长
3 months
期刊介绍: Journal of Hydroinformatics is a peer-reviewed journal devoted to the application of information technology in the widest sense to problems of the aquatic environment. It promotes Hydroinformatics as a cross-disciplinary field of study, combining technological, human-sociological and more general environmental interests, including an ethical perspective.
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