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Power system blackout model embedded with AC power flow and time-varying operational states

机译:嵌入交流电潮流和时变运行状态的电力系统停电模型

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This paper presents a novel simulation framework consisting of three interactive modules for power system analysis to reveal the quantified numerical nature of cascading failure and blackout. Rather than directly implementing DC power flow based two-layer OPA methodology, we model cascading failure and blackout using AC power flow calculation within hourly time-varying scenarios to consider voltage regulation and more realistic operational status. Moreover, three interactive modules, cascade trigger layer, operational status layer, and infrastructure upgrade layer are designed to represent cascading failure evolution, load stress variation and systemic upgrade respectively, which highlight the closely related factors impacting blackout occurrence among operation, scheduling and expansion perspective. Therefore, the proposed model is able to simulate catastrophic blackout in a more detailed way. The real power system case studies including global criticality and elemental vulnerability analysis are performed in order to verify and demonstrate the proposed model.
机译:本文提出了一个由三个交互式模块组成的新颖的仿真框架,用于电力系统分析,以揭示级联故障和停电的量化数值特性。我们不是直接实施基于直流潮流的两层OPA方法,而是在每小时时变场景中使用交流潮流计算对级联故障和停电进行建模,以考虑电压调节和更实际的运行状态。此外,设计了三个交互模块,即级联触发层,操作状态层和基础架构升级层,分别表示级联故障演变,负载应力变化和系统升级,突出了影响操作,调度和扩展角度的停电发生的密切相关因素。 。因此,所提出的模型能够以更详细的方式模拟灾难性停电。为了验证和演示所提出的模型,进行了包括全局关键性和元素脆弱性分析在内的实际电力系统案例研究。

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