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Reliability Evaluation for Microgrids Using Cross-Entropy Monte Carlo Simulation

机译:基于交叉熵蒙特卡洛模拟的微电网可靠性评估

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This paper proposes a new method to evaluate reliability indices for load served within a grid-connected microgrid. It is based on sequential Monte Carlo simulation (MCS) and the cross-entropy method; considers time-dependent generating resources, load, and energy storage; and calculates the probability, frequency, and cost of loss of load events. Grid-connected microgrids are typically very reliable systems, and thus sequential MCS methods can face slow convergence times. The cross-entropy method, which is used here to distort transition rates for the distribution system and generators, greatly speeds convergence without sacrificing the primary advantages of sequential simulation. Validation is run against sequential MCS for several microgrid configurations. The new algorithm reproduces indices to within 6% and reduces run-times by factors of 5–19.
机译:本文提出了一种评估并网微电网内负荷可靠性指标的新方法。它基于顺序蒙特卡罗模拟(MCS)和交叉熵方法;考虑时间相关的发电资源,负荷和能量存储;并计算损失负载事件的概率,频率和成本。并网的微电网通常是非常可靠的系统,因此顺序的MCS方法可能会遇到缓慢的收敛时间。此处使用的交叉熵方法扭曲了配电系统和发电机的过渡速率,极大地加快了收敛速度,同时又不牺牲顺序仿真的主要优势。针对多个微电网配置,针对顺序MCS进行验证。新算法可将索引重现到6%以内,并将运行时间减少5-19倍。

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