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Gene evolution algorithm to determine minimum break point set for optimal coordination of directional protection relays in multiloops networks

机译:基因进化算法确定最小断点集,以实现多回路网络中方向保护继电器的最佳协调

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To determine directional simple loops and minimum break point set in multiloop complex networks is the key step during calculating and setting of direction relays protection values. In order to greatly improve the practicability of algorithm, new concepts of protection dependency dimension and primary/backup protection dependency set are firstly put forward in this paper. Comparing protection dependency dimensions and by depth-first-search of protection dependency set could find out all the directional simple loops. Using the heuristic knowledge of MBPS (minimum break point set), the determination of MBPS is reduced to a 0-1 integer quadratic programming problem. On the basis of the principle of Gene evolution, a new approach to determine MBPS is presented for the fist time. Protection coordination of "T" shape lines and radiate network can be deal with by the method. Many examples have shown that the method is very simple, effective, and greatly reduced the complexity of problem.
机译:在多回路复杂网络中确定方向性简单回路和最小断点设置是方向继电器保护值的计算和设置过程中的关键步骤。为了大大提高算法的实用性,本文首先提出了保护依赖维度和主备保护依赖集的新概念。比较保护依赖关系维度并通过深度优先搜索保护依赖关系集,可以找出所有定向简单循环。使用MBPS(最小断点集)的启发式知识,将MBPS的确定简化为0-1整数二次规划问题。根据基因进化原理,提出了一种确定MBPS的新方法。该方法可以解决“ T”形线与辐射网的保护协调问题。许多例子表明,该方法非常简单,有效,并且大大降低了问题的复杂性。

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