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An impact-increment based Monte Carlo simulation reliability assessment approach for transmission systems

机译:基于冲击增量的传输系统蒙特卡洛仿真可靠性评估方法

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This paper proposes an impact-increment based Monte Carlo simulation (IIMCS) reliability assessment approach, specially designed for transmission systems. First, the impact-increment based formula of reliability indices is deduced by partially transferring the impact of higher order contingencies to the corresponding lower order ones. Then this formula is transformed into a new formation to adapt to the Monte Carlo sampling process, and IIMCS approach is proposed accordingly. Moreover, a reduction technique is proposed to decrease the number of higher order contingencies without decreasing the accuracy. Consequently, the computational performance is effectively improved by the proposed approach. Case study is performed on the IEEE 300-bus test system. Results indicate that the proposed method is more efficient than traditional Monte Carlo simulation in large scale transmission systems. Also, the efficiency can be controlled by modifying the preset parameters to adapt to different scenarios.
机译:本文提出了一种基于冲击增量的蒙特卡洛模拟(IIMCS)可靠性评估方法,专门为传输系统设计。首先,通过将高阶偶发事件的影响部分转移到相应的低阶偶发事件的影响,推导出基于影响增量的可靠性指标公式。然后将该公式转换为适应蒙特卡洛采样过程的新形式,并据此提出了IIMCS方法。此外,提出了一种减少技术以减少高阶偶发事件的数量而不降低精度。因此,所提出的方法有效地提高了计算性能。案例研究是在IEEE 300总线测试系统上进行的。结果表明,在大规模传输系统中,该方法比传统的蒙特卡洛模拟更有效。同样,可以通过修改预设参数以适应不同情况来控制效率。

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