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Evaluation of Operational Reliability of a Microgrid Using a Short-Term Outage Model

机译:使用短期中断模型评估微电网的运行可靠性

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Island-capable microgrids can potentially improve customer reliability, but protection-related issues can adversely affect this reliability benefit. At the same time, average annualized indices often do not effectively convey a complete picture of load-point reliabilities in microgrids integrated with multiple weather-dependent microsources. The primary goal of this work is to investigate the impacts of protection system and operating conditions on the reliability indices of a microgrid. The proposed method utilizes a short-term outage model that quantifies the relationship between state variables and the outage rate of component. A hybrid approach is proposed, which combines scenario selection and enumerative analysis. Simulations on a test system illustrate the dependence of operational reliability on factors such as local meteorological conditions, correlation between variable generation and loads, as well as the effects of protection system operations. Finally, some recommendations on the parameter settings of protection system are provided to enhance the system reliability.
机译:具有孤岛能力的微电网可以潜在地提高客户的可靠性,但是与保护相关的问题可能会对这种可靠性带来不利影响。同时,平均年化指数通常无法有效地传达集成了多种天气相关微源的微电网中负荷点可靠性的完整情况。这项工作的主要目的是研究保护系统和操作条件对微电网可靠性指标的影响。所提出的方法利用了短期停机模型,该模型量化了状态变量和组件的停机率之间的关系。提出了一种混合方案,将方案选择和枚举分析相结合。在测试系统上进行的仿真说明了运行可靠性对诸如当地气象条件,变量生成与负载之间的相关性以及保护系统运行的影响等因素的依赖性。最后,针对保护系统的参数设置提出了一些建议,以提高系统的可靠性。

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