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Minimal cut sets, Petri nets, and prime number encoding in distribution system reliability evaluation

机译:配电系统可靠性评估中的最小割集,Petri网和素数编码

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Reliability assessment of secondary distribution networks is an important subject due to the increasing demand for more reliable service with less interruption frequency and duration. The connection of a distribution network may be neither series nor parallel, and analyzing such a network is a complicated process and time consuming task. In this paper, a technical approach for evaluating the reliability of a mesh networked distribution system is described. The proposed method is based on the identification of circuit minimal tie sets using the concept of Petri nets. Then, prime numbers encoding and unique prime factorization are applied to classify the remaining combinations as tie sets, cut sets, or minimal cut sets. The minimal cut sets are used to calculate the Availability (A), Average Interruption Frequency (AIF), and Average Interruption Duration (AID) of the network. Examples are shown to illustrate the proposed method. The method shown is algorithmic and appears suitable for off-line comparison of alternative secondary distribution system designs on the basis of their reliability.
机译:由于对具有更少中断频率和持续时间的更可靠服务的需求不断增长,因此二级配电网络的可靠性评估是一个重要的课题。配电网络的连接既不能是串联的也不是并联的,分析这样的网络是一个复杂的过程,而且很耗时。在本文中,描述了一种评估网状网络配电系统可靠性的技术方法。所提出的方法基于使用Petri网的概念对电路最小联络集的识别。然后,应用素数编码和唯一素因数分解将其余组合分类为领带集,割集或最小割集。最小割集用于计算网络的可用性(A),平均中断频率(AIF)和平均中断持续时间(AID)。实例显示了所提出的方法。所示方法是算法算法,基于其可靠性,似乎适合于备用二次配电系统设计的离线比较。

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