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Power system reliability evaluation considering substation interior under protection failure impact

机译:考虑变电站内部保护失效影响的电力系统可靠性评估

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In order to measure the impact of substation interior on power system reliability under protection influence, a hierarchical power system which consists of equipment level, substation level and power system level is established. A stratified-sampling Monte-Carlo method is proposed based on Markov state space and functional decomposition. Probabilities of substation equipment states are calculated with Markov Models. Functional decomposition is done according to the result of relay protection. The expected accident set of station is formed with the minimum cut set algorithm based on adjacency matrix. Substation equipments and protection functional groups are sampled respectively. The off outlet and inlet lines are recognized through comparing the expected accident set with the sample fault set. After that, reliability index can be figured out. The result certifies that the above-mentioned method can assess substation interior and power system as a whole and do quantitative analysis of the influence of substation equipments and substation structures with protection failure on power system reliability.
机译:为了衡量变电站内部在保护影响下对电力系统可靠性的影响,建立了由设备层,变电站层和电力系统层组成的分级电力系统。提出了一种基于马尔可夫状态空间和函数分解的分层抽样蒙特卡罗方法。用马尔可夫模型计算变电站设备状态的概率。根据继电器保护的结果进行功能分解。基于邻接矩阵的最小割集算法形成了车站的期望事故集。分别对变电站设备和保护功能组进行采样。通过将预期的事故组与样本故障组进行比较,可以识别出出口和入口管线。之后,可以得出可靠性指标。结果证明,上述方法可以对变电站内部和电力系统进行整体评估,并对变电站设备和变电站结构的保护失效对电力系统可靠性的影响进行定量分析。

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