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Protection strategies against cascading failure for Singapore transmission grid

机译:新加坡传输网格级联失效的保护策略

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The vulnerability of power grid is a key issue with large blackouts, causing power supply to be halted for millions. With a special touch on power grid of Singapore, this study aims to provide practical and effective protection schemes to enhance grid robustness against cascading failure caused by intentional or unintentional attack. Power grid distinguishes itself from other networks like traffic and Internet with hierarchic structure and power flow restriction. To generate realistic results, we adopted real-world power flow convention to Wang's cascading model in modeling power network. The simulation results led to the discovery of intrinsic vulnerability introduced by grid structure and the correlation between grid robustness and power demand. We proposed and verified 3 protection schemes, namely Cascaded Load Cut-off (CLC), Cascaded Load Overflow (CLO) and Cascaded Load Spread (CLS), among which CLS was proven the most effective to enhance the grid robustness against various attacks on 230kV and 66kV grid.
机译:电网的漏洞是一个带有大型停电的关键问题,导致电源停止数百万。该研究旨在提供新加坡电网,旨在提供实用且有效的保护计划,以提高由故意或无意攻击引起的级联失败的电网鲁棒性。电网通过层次结构和电流限制将其自身与交通和互联网等其他网络区分开来。为了产生现实的结果,我们采用了在王建电网的级联模型中采用了真实的电力流量。仿真结果导致了网格结构引入的内在漏洞以及电网鲁棒性和电力需求之间的相关性。我们提出和验证了3个保护方案,即级联负载截止(CLC),级联负载溢出(CLO)和级联负载扩展(CLS),其中CLS被证明是最有效的,以提高230kV各种攻击的电网鲁棒性。和66kV网格。

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