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Iteration Algorithm of Reliability Evaluation for Medium Voltage System

机译:中压系统可靠性评估的迭代算法

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The fault-spreading algorithm is often used in the reliability evaluation of medium-voltage distribution networks. However, there exist many redundant searches in the fault-spreading algorithm, which lower the calculation efficiency. To improve the search performance, an iteration algorithm is presented in this paper. This algorithm first establishes a switch-layer tablet before fault enumeration. In the tablet, the backward information, for example, load of the present switch can be partially obtained from the switches in the backward layer, which spare much time for backward search. Secondly, by using the information in the known fault sequences and in the switch-layer tablet, based on the switch-fixing information of the fault point and its forward point, various fault modes and load-classification can be derived without forward searches. This algorithm has been applied to reliability evaluation of the test system RBT-BUS6, RBT-BUS2, and a practical system. The test results have shown that the algorithm is correct and effective. Finally, the time complexity degree analysis has also shown that this algorithm is more superior to the fault-spreading one.
机译:故障扩展算法通常用于中压配电网的可靠性评估。然而,在故障扩展算法中存在许多冗余搜索,这降低了计算效率。为了提高搜索性能,本文提出了一种迭代算法。该算法首先在故障枚举之前建立开关层平板电脑。在平板电脑中,例如,向后信息可以从后向层中的开关部分地从后面的开关部分地获得,这很多时间用于向后搜索。其次,通过使用已知故障序列中的信息和开关层平板电脑,基于故障点的开关定影信息及其前进点,可以在不前进搜索的情况下导出各种故障模式和负载分类。该算法已应用于测试系统RBT-BUS6,RBT-BUS2和实用系统的可靠性评估。测试结果表明该算法是正确且有效的。最后,时间复杂性度分析还表明,该算法更优于故障扩展。

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