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Analytical Reliability Assessment Method for Complex Distribution Networks Considering Post-Fault Network Reconfiguration

机译:考虑故障后网络重构的复杂配电网可靠性分析评估方法

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摘要

Analytical methods for evaluating the reliability of simple and radial distribution networks have been well established. Since these analytical methods cannot consider post-fault load transfer between feeders, the reliability indices are significantly underestimated for mesh-constructed distribution networks. To accommodate various application scenarios, Monte-Carlo simulations are widely used for complex distribution networks and heavy computation burden is involved. In this paper, we propose a novel linear programming model which includes precisely assessing reliability and considers post-fault network reconfiguration strategies involving operational constraints. Moreover, this model also can formulate the influences of demand variations, uncertainty of distributed generations and protection failures on the reliability indices. Numerical simulations show that the proposed model yields the same results as the simulation-based algorithm. Specifically, the system average interruption duration indices are reduced when considering post-fault network reconfiguration strategies in all tested systems. Moreover, the proposed model is suitable for inclusion in reliability-constrained operational and planning optimization models for power distribution systems.
机译:评估简单和径向分布网络可靠性的分析方法已经建立。由于这些分析方法无法考虑馈线之间的故障后负荷转移,因此对于网状结构的配电网络,可靠性指标被大大低估了。为了适应各种应用场景,蒙特卡洛模拟被广泛用于复杂的配电网络,并且涉及沉重的计算负担。在本文中,我们提出了一种新颖的线性规划模型,该模型包括精确评估可靠性,并考虑了涉及操作约束的故障后网络重配置策略。此外,该模型还可以公式化需求变化,分布式发电的不确定性和保护故障对可靠性指标的影响。数值仿真表明,所提出的模型与基于仿真的算法产生的结果相同。具体来说,在所有测试系统中考虑故障后网络重新配置策略时,系统平均中断持续时间指数会降低。此外,所提出的模型适合包含在配电系统的可靠性受约束的运行和计划优化模型中。

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