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Automated Handling of Arbitrary Switching Device Topologies in Planning Contingency Analysis: Towards Temporal Interoperability in Network Security Assessment

机译:规划应变分析中的自动交换设备拓扑结构的自动处理:网络安全评估中的时间互操作性

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Existing power system planning software is not capable of simulating large numbers of contingencies that involve bus mergers and bus splits without cumbersome modifications to planning models either manually or through scripting. This means that some of the events that can occur in a bulk power system are not studied in detail prior to real-time operation. This paper proposes the use of a unified network applications framework for planning contingency analysis capable of incorporating contingencies that involve arbitrary configurations of switching devices. The method handles any type of bus split or bus merger events automatically without requiring case conversion or modification. This drastically simplifies the tabulation of results of complex contingencies and makes potential unsecure system conditions visible during the planning stage. The efficiency of the algorithm is demonstrated in large-scale ISO models that incorporate full-topology switching modeling, and it is shown to be at least ten times faster than scripting. The proposed method hence supports direct comparison of planning and real-time grid security assessment evaluation, providing full temporal interoperability between offline contingency analysis and real-time security assessment.
机译:现有的电力系统规划软件无法模拟大量涉及总线合并和总线拆分的突发事件,而无需手动或通过脚本对规划模型进行繁琐的修改。这意味着在实时操作之前,不会详细研究大功率系统中可能发生的某些事件。本文提出了使用统一的网络应用程序框架来计划突发事件分析的能力,该框架能够纳入涉及交换设备任意配置的突发事件。该方法自动处理任何类型的总线拆分或总线合并事件,而无需大小写转换或修改。这极大地简化了复杂意外事件结果的制表,并使潜在的不安全系统条件在计划阶段可见。在结合了全拓扑转换建模的大规模ISO模型中证明了该算法的效率,并且该算法的效率至少比编写脚本快十倍。因此,所提出的方法支持对计划与实时网格安全评估进行直接比较,从而在离线意外事件分析与实时安全评估之间提供完全的时间互操作性。

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