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Reliability assessment of multiple substations in Idaho system using a node-breaker model

机译:使用节点断路器模型的爱达荷系统多变电站的可靠性评估

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The reliability performance of transmission substations and switching stations is critical to the overall system reliability. The outage of an element in a substation can result in multiple outages of other network elements, such as lines and transformers, and can lead to cascading events. Traditionally, probabilistic techniques have been applied to a bus-branch (BB) model, and to assess the impact of substation-related outages, it was necessary to manually add substation configurations. This paper presents an approach for assessing the reliability of multiple substations in Idaho Power Company (IPC) system using a detailed node-breaker (NB) model representation. The paper also presents an approach to automatically generate a large number of contingencies from the NB model that can be used in complying with the North American Electric Reliability Corporation (NERC) Transmission System Planning Performance Requirements (TPL) and performing system reliability studies. The presented approach is illustrated using a portion of the actual IPC system that includes all 230 kV and higher voltage substations.
机译:传输变电站和交换站的可靠性性能对整体系统可靠性至关重要。变电站中的元素的中断可能导致其他网络元件的多个中断,例如线条和变压器,并且可以导致级联事件。传统上,概率技术已应用于总线分支(BB)模型,并评估与变电站相关的中断的影响,有必要手动添加变电站配置。本文介绍了一种使用详细的节点断路器(NB)模型表示来评估爱达荷州电力公司(IPC)系统中多变电站的可靠性的方法。本文还提出了一种方法,可以从NB模型自动生成大量突发事件,这些模型可遵守北美电力可靠性公司(NERC)传输系统规划性能要求(TPL)和执行系统可靠性研究。使用包括所有230kV和更高电压变电站的实际IPC系统的一部分来说明所提出的方法。

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