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Localization of Emerging Leakages in Water Distribution Systems: A Complex Networks Approach

机译:供水系统中新泄漏的定位:一种复杂的网络方法

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Water distribution networks are infrastructural systems designed for providing potable water to consumers. In these last decades, the importance of assessing and identifying emerging leakages has become a primary issue, because of the high level of water loss characterizing such systems worldwide. In this paper, a new approach aimed at the prompt localization of leakages occurring in water distribution systems is introduced. The methodology relies on the analysis of real-time pressure measurements and on Complex Networks Theory. Starting from a collection of nodes representing the locations of pressure sensors, links of a virtual, complex network are created on the basis of the values assumed by correlation coefficients between pressure measurements: if such values are above a given threshold, relevant nodes are considered to be connected to each other. In this way, information about the structure and topology of the complex network is easily derived. In particular, the degree centrality of the nodes is a key parameter allowing to identify the position of a leakage. The paper first analyzes a well-known literature example, and then proves the high reliability of the methodology for a real water distribution system.
机译:供水网络是为向消费者提供饮用水而设计的基础设施系统。在过去的几十年中,由于全球范围内此类系统的大量失水,评估和识别新出现的泄漏已成为一个主要问题。本文介绍了一种新方法,旨在迅速定位供水系统中发生的泄漏。该方法依赖于实时压力测量的分析和复杂网络理论。从代表压力传感器位置的节点集合开始,根据压力测量之间的相关系数所假定的值创建虚拟的复杂网络的链接:如果这些值高于给定阈值,则将相关节点视为彼此连接。这样,可以轻松得出有关复杂网络的结构和拓扑的信息。特别地,节点的中心度是允许识别泄漏位置的关键参数。本文首先分析了一个著名的文献实例,然后证明了该方法在实际供水系统中的高可靠性。

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