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Reliability Evaluation of Active Distribution Systems Including Microgrids

机译:包括微电网的有源配电系统的可靠性评估

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This paper proposes a new method for reliability evaluation of active distribution systems with multiple microgrids based on a Monte Carlo simulation. Multi-state models are developed on the basis of generalized capacity outage tables (GCOTs) to better represent various types of distributed generators in reliability evaluation. Then, the virtual power plant (VPP) is introduced to model microgrids with intermittent sources. Furthermore, the reliability behavior of VPP is efficiently characterized by an equivalent GCOT. The nonsequential Monte Carlo method is then adopted to evaluate the reliability of active distribution systems considering different operation modes under single or multiple contingencies. Some techniques—such as two-step state sampling, zone partitioning and minimal path search—are proposed to facilitate the state evaluation process and improve the Monte Carlo simulation speed. The effectiveness and efficiency of the proposed method are validated through extensive numerical tests on an IEEE test system and a real-life active distribution network.
机译:本文提出了一种基于蒙特卡罗模拟的多微电网有源配电系统可靠性评估的新方法。基于广义容量中断表(GCOT)开发了多状态模型,以便在可靠性评估中更好地表示各种类型的分布式发电机。然后,引入虚拟电厂(VPP)对具有间歇性来源的微电网进行建模。此外,通过等效的GCOT有效地表征了VPP的可靠性行为。然后采用非顺序蒙特卡洛方法来评估在单个或多个突发情况下考虑不同操作模式的主动配电系统的可靠性。提出了一些技术,例如两步状态采样,区域划分和最小路径搜索,以促进状态评估过程并提高蒙特卡洛仿真速度。通过在IEEE测试系统和现实生活中的有源配电网络上进行的大量数值测试,验证了该方法的有效性和效率。

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