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Reliability Assessment of Time-Dependent Systems via Sequential Cross-Entropy Monte Carlo Simulation

机译:通过时序交叉熵蒙特卡洛模拟评估时变系统的可靠性

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This paper proposes a new methodology to evaluate system generating capacity reliability indices considering time-dependent power sources and loads. Based on sequential Monte Carlo simulation (MCS) and the cross-entropy (CE) method, the basic idea is to find an optimal distortion for the equipment transition rates using the CE concepts. A chronological simulation is then carried out using these newly found optimal reference parameters. This process suitably modifies the chronological evolution of the system in order to improve its statistical efficiency and convergence properties. As a result, the computational efforts of the sequential simulation can be greatly reduced while retaining many of its main advantages. Comparisons with the chronological, pseudo-chronological, and quasi-sequential MCS are carried out using the IEEE-RTS-96 (Reliability Test System) and modifications of this system that include renewable sources.
机译:本文提出了一种新的方法来评估考虑时间相关的电源和负载的系统发电容量可靠性指标。基于顺序蒙特卡罗模拟(MCS)和交叉熵(CE)方法,基本思想是使用CE概念为设备转换速率找到最佳失真。然后使用这些新发现的最佳参考参数进行时间顺序仿真。该过程适当地修改了系统的时间演变,以提高其统计效率和收敛性。结果,可以大大减少顺序仿真的计算量,同时保留许多主要优点。使用IEEE-RTS-96(可靠性测试系统)和对该系统的修改(包括可再生资源)与按时间顺序,准时间顺序和准顺序MCS进行比较。

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