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Non-sequential Monte Carlo simulation for cyber-induced dependent failures in composite power system reliability evaluation

机译:复合动力系统可靠性评估中网络诱发的相关故障的非顺序蒙特卡洛模拟

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摘要

Cyber-induced dependent failures are important to be considered in composite system reliability evaluation. Because of the complexity and dimensionality, Monte Carlo simulation is a preferred method for composite system reliability evaluation. The non-sequential Monte Carlo or sampling generally requires less computational and storage resources than sequential techniques and is generally preferred for large systems where components are independent or only a limited dependency exists. However, cyber-induced events involve dependent failures, making it difficult to use sampling methods. The difficulties of using sampling with dependent failures are discussed and a solution is proposed. The basic idea is to generate a representative state space from which states can be sampled. The probabilities of representative state space provide an approximation of the joint distribution and are generated by a sequential simulation in this paper but it may be possible to find alternative means of achieving this objective. The proposed method preserves the dependent features of cyber-induced events and also improves the efficiency. Although motivated by cyber-induced failures, the technique can be used for other types of dependent failures as well. A comparative study between a purely sequential methodology and the proposed method is presented on an extended Roy Billinton Test System.
机译:网络诱发的相关故障在复合系统可靠性评估中必须加以考虑。由于复杂性和维度性,蒙特卡洛模拟是用于复合系统可靠性评估的首选方法。与顺序技术相比,非顺序蒙特卡洛或采样通常需要较少的计算和存储资源,通常对于组件独立或仅存在有限依赖性的大型系统是首选的。但是,网络诱发的事件涉及相关的故障,因此很难使用采样方法。讨论了使用具有相关故障的采样的困难,并提出了解决方案。基本思想是生成可从中采样状态的代表性状态空间。代表性状态空间的概率提供了关节分布的近似值,并且是通过本文的顺序模拟生成的,但是有可能找到实现此目标的替代方法。所提出的方法保留了网络诱发事件的相关特征,并提高了效率。尽管是由网络故障引起的,但该技术也可以用于其他类型的相关故障。在扩展的Roy Billinton测试系统上提出了纯顺序方法与建议方法之间的比较研究。

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