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Modeling the Power Distribution Network of a Virtual City and Studying the Impact of Fire on the Electrical Infrastructure

机译:对虚拟城市的配电网络建模并研究火灾对电气基础设施的影响

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摘要

The smooth and reliable operation of key infrastructure components like water distribution systems, electric power systems, and telecommunications is essential for a nation?s economic growth and overall security. Tragic events such as the Northridge earthquake and Hurricane Katrina have shown us how the occurrence of a disaster can cripple one or more such critical infrastructure components and cause widespread damage and destruction. Technological advancements made over the last few decades have resulted in these infrastructure components becoming highly complicated and inter-dependent on each other. The development of tools which can aid in understanding this complex interaction amongst the infrastructure components is thus of paramount importance for being able to manage critical resources and carry out post-emergency recovery missions.The research work conducted as a part of this thesis aims at studying the effects of fire (a calamitous event) on the electrical distribution network of a city. The study has been carried out on a test bed comprising of a virtual city named Micropolis which was modeled using a Geographic Information System (GIS) based software package. This report describes the designing of a separate electrical test bed using Simulink, based on the GIS layout of the power distribution network of Micropolis. It also proposes a method of quantifying the damage caused by fire to the electrical network by means of a parameter called the Load Loss Damage Index (LLDI). Finally, it presents an innovative graph theoretic approach for determining how to route power across faulted sections of the electrical network using a given set of Normally Open switches. The power is routed along a path of minimum impedance.The proposed methodologies are then tested by running numerous simulations on the Micropolis test bed, corresponding to different fire spread scenarios. The LLDI values generated from these simulation runs are then analyzed in order to determine the most damaging scenarios and to identify infrastructure components of the city which are most crucial in containing the damage caused by fire to the electrical network. The conclusions thereby drawn can give useful insights to emergency response personnel when they deal with real-life disasters.
机译:供水系统,电力系统和电信等关键基础设施组件的平稳可靠运行对于一个国家的经济增长和整体安全至关重要。诺斯里奇地震和卡特里娜飓风等悲惨事件向我们展示了灾难的发生如何破坏一个或多个此类关键基础设施组件,并造成广泛的破坏和破坏。在过去的几十年中,技术上的进步导致这些基础架构组件变得高度复杂并且相互依赖。因此,开发有助于理解基础结构组件之间这种复杂交互作用的工具对于能够管理关键资源和执行紧急情况后的恢复任务至关重要。作为本文一部分的研究工作旨在研究火灾(灾难性事件)对城市配电网络的影响。这项研究是在一个试验台上进行的,该试验台由一个名为Micropolis的虚拟城市组成,并使用基于地理信息系统(GIS)的软件包进行了建模。本报告描述了基于Micropolis配电网络的GIS布局,使用Simulink设计单独的电气测试台。它还提出了一种方法,该方法通过称为负载损失损坏指数(LLDI)的参数来量化火灾对电网造成的损坏。最后,它提供了一种创新的图形理论方法,用于确定如何使用给定的一组常开开关跨电网的故障部分路由电源。功率沿着最小阻抗的路径进行路由,然后通过在Micropolis测试床上运行大量模拟(对应于不同的火势蔓延场景)对所提出的方法进行测试。然后分析从这些模拟运行中生成的LLDI值,以确定最具破坏性的情况并确定城市的基础设施组件,这些组件对于遏制火灾对电网造成的破坏至关重要。由此得出的结论可以为应急人员处理现实灾难提供有用的见解。

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    Bagchi Arijit;

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