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Evaluating the Effect of Dynamic and Static Modelling on Cascading Failure Analysis in Power Systems

机译:评估动态静态建模对电力系统级联失效分析的影响

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摘要

As the main cause of large blackouts, understanding the complex interactions involved in cascading failure propagation is a critical area of ongoing research. The static model of cascading failures is a well-accepted method to investigate the cascading effects in power systems. However, as the power system evolves, dynamic behaviours become more variable, it is necessary to evaluate the validity of the assumptions in the static model. This paper compares and validates a conventional static model with a novel dynamic model capturing frequency dynamics. N-2 contingency analysis is used to trigger cascading events and the unserved demand and the number of branch outages are used as metrics. Analysis using the 39-bus, 200-bus and 2000-bus benchmark systems reveal similarities and differences between the static and dynamic models and reveal, for the first time, how these differences vary as network size grows. Sensitivity analysis on system dispatch capabilities provides some initial guidance to help reduce the differences between models and helps with understanding of the relative importance of cascading mechanisms.
机译:作为大型停电的主要原因,了解级联失败繁殖中涉及的复杂相互作用是正在进行的研究的关键领域。级联故障的静态模型是一种可接受的方法,用于研究电力系统中的级联效果。然而,随着电力系统的发展,动态行为变得更加变量,有必要评估静态模型中的假设的有效性。本文将传统静态模型进行比较和验证具有新型动态模型捕获频率动态的静态模型。 N-2应急分析用于触发级联事件,并且未使用的需求和分支中断的数量用作指标。使用39总线,200座和2000母线基准系统的分析揭示了静态和动态模型之间的相似之处和差异,并首次揭示这些差异随网络大小的增长而变化。系统调度能力的敏感性分析提供了一些初步指导,以帮助减少模型之间的差异,并有助于了解级联机制的相对重要性。

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