A Fast Reliability Assessment Method Based on Sequential Monte Carlo Simulation Considering Historical Fault Data

Tao Xu, Yong Wang, Hanbing Qu, Pu Zhao, Yan Wang
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Abstract

This paper studies the reliability evaluation algorithm of complex distribution networks. In order to simplify the analysis process, components in the network are divided and equivalent to different virtual devices to eliminate the quantity of devices by the two-step process in fault process. According to the phenomenon of repeated fault analysis during the simulation process, a historical fault list is constructed to store the fault data for subsequent simulation. The data is dynamically updated by sequential list search method within the simulation process. On the basis of above methods, combining with the impact analysis, the reliability assessment method on historical fault is proposed. Finally, by using the proposed method and algorithm, this paper takes a modified RBTS BUS6 system to illustrate the high efficiency and correctness of the proposed method in the paper.
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考虑历史故障数据的时序蒙特卡罗快速可靠性评估方法
本文研究了复杂配电网的可靠性评估算法。为了简化分析过程,将网络中的组件划分为不同的虚拟设备,通过故障处理中的两步法消除设备数量。根据仿真过程中故障重复分析的现象,构建历史故障列表,存储故障数据,供后续仿真使用。在仿真过程中,采用顺序列表搜索法动态更新数据。在上述方法的基础上,结合影响分析,提出了历史故障可靠性评估方法。最后,以改进后的RBTS BUS6系统为例,验证了本文所提方法的高效性和正确性。
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