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A fast and efficient method for reliability evaluation of interconnected power systems-preferential decomposition method

机译:互联电力系统可靠性评估的快速高效方法-优先分解法

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In the simultaneous decomposition-simulation (SiDeS) method, efficiency of the decomposition process decreases rapidly as the sets get decomposed into smaller probability sets. This is because, the number of states being classified as acceptable sets or identical area loss-of-load sets in generation deficient areas is small and consequently, the number of sets which are generated for a given threshold probability is large. The number of sets generated has serious implications on the memory requirements and frequency calculations which depend on the examination of subset intersection. In the new preferential simultaneous decomposition-simulation (PreSiDeS) method, five concepts have been introduced which improve the efficiency of the decomposition process. A characteristic value is assigned to each of the areas for the maximum state of the set depending on excess generation or deficient generation. Then the maximal flow algorithm is performed to utilize generation, first from excess generation areas and then from deficient generation areas. This increases the states in deficient generation areas being classified as acceptable sets or identical area loss-of-load sets to more than one state. Also in the decomposition of loss-of-load sets, if all the areas which have deficient generation are loss-of-load, then the neighboring help to these areas is reduced to zero which increases the states in identical area loss-of-load set being generated. Application of these concepts to the decomposition process results in much fewer sets and improves the efficiency of the decomposition phase.
机译:在同时分解模拟(SiDeS)方法中,分解过程的效率随着集合分解为较小的概率集合而迅速降低。这是因为,在发电不足的区域中被分类为可接受的集合或相同区域的空载集合的状态的数量少,因此,对于给定的阈值概率生成的集合的数量大。生成的集合数量对内存需求和频率计算有严重的影响,这取决于子集相交的检查。在新的优先同时分解模拟(PreSiDeS)方法中,引入了五个概念来提高分解过程的效率。针对该组的最大状态,将特征值分配给每个区域,这取决于过量发电或不足发电。然后执行最大流量算法以利用发电,首先从多余的发电区域开始,然后从发电不足的区域开始发电。这将不足的发电区域中被分类为可接受组或相同区域失负荷组的状态增加到一个以上状态。同样在损失负荷集合的分解中,如果所有发电不足的区域都是负荷损失,则对这些区域的邻近帮助会减少为零,这会增加相同区域的负荷损失状态集正在生成。将这些概念应用到分解过程中,可以减少集合并提高分解阶段的效率。

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