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DMA Optimal Layout for Protection of Water Distribution Networks from Malicious Attack

机译:DMA优化布局,以保护自来水管网免受恶意攻击

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Water distribution networks (WDNs) are among the most important civil networks, because they deliver drinking and industrial water to metropolitan areas, supporting economic prosperity and quality of life. Therefore, they constitute critical infrastructures (CIs) as systems whose operability are of crucial importance to ensure social survival and welfare. In the last years, extreme natural events and intentional malicious attacks have shown that global safeguard of systems cannot be ever performed. In this regard, critical infrastructure protection (CIP) strategies should be focused both on the prevention of these events and on the procedures for the functioning recovery and damage limitation. In this paper, starting from previous works of the authors, the impact of an intentional contamination attack to water distribution network and a possible strategy to mitigate the user risk have been studied, simulating the introduction of potassium cyanide with a backflow attack into water system. As protection technique, the water network partitioning (WNP) has been adopted in order to improve the management and also to reduce the extent of damage showing a dual use-value. WNP reveals to be an efficient way to protect water networks from malicious contamination, through the closure of gate valves by a remote control system creating semi-independent District Meter Areas (DMAs). The study also investigates the possibility to identify a priori the most critical point of a water distribution network for the malicious attack through a novel procedure based on topological metric. The methodology, tested on a real medium size water network in Italy, shows very interesting results in terms of mitigation risk.
机译:供水网络(WDN)是最重要的民用网络之一,因为它们向大城市地区提供饮用水和工业用水,从而为经济繁荣和生活质量提供了支持。因此,它们构成了至关重要的基础架构(CI),这些系统的可操作性对于确保社会生存和福利至关重要。在过去的几年中,极端的自然事件和故意的恶意攻击表明,无法对系统进行全面的保护。在这方面,关键的基础设施保护(CIP)策略应既集中在预防这些事件上,又集中在功能恢复和损害限制的程序上。在本文中,从作者先前的工作出发,研究了故意污染攻击对配水网络的影响以及减轻用户风险的可能策略,模拟了氰化钾在水系统中回流的引入。作为保护技术,已经采用了水网划分(WNP),以改善管理并减少具有双重使用价值的损害程度。通过创建半独立的区域计量表区域(DMA)的远程控制系统关闭闸阀,WNP成为保护水网络免受恶意污染的有效方法。该研究还调查了通过基于拓扑度量的新颖程序,先验确定水分配网络最关键点进行恶意攻击的可能性。该方法在意大利的一个实际中等规模的供水网络上进行了测试,显示出在缓解风险方面非常有趣的结果。

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