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An Effective Topological and Primitive Impedance Based Distribution Load Flow Method for Radial Distribution Systems

机译:基于有效拓扑和原始阻抗的径向配电系统配电潮流方法

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In this paper, an effective topological primitive impedance and distribution power flow algorithm is developed.This method fully exploits the radial structure of the network and solves the distribution load flow directly. An effective data structure is proposed to identify all those lines that are incident to the path between the feeding bus and any selected bus. Using this concept and primitive impedances of the lines, only diagonal elements of the Distribution Load Flow (DLF) matrix are computed and stored in single dimension vectors to obtain the distribution load flow solution. Unlike other traditional methods, the proposed approach does not require any LU decomposition or Bus admittance matrix. It is robust, time-effieient and needs very less memory for any size of the distribution system. The proposed method is tested on standard IEEE 15,31,34,69 and 85 bus radial distribution systems and results are promising and has great potential application in the distribution automation.
机译:本文开发了一种有效的拓扑原始阻抗和配电潮流算法。该方法充分利用了网络的径向结构,直接解决了配电潮流。提出了一种有效的数据结构来识别所有与馈电总线和任何选定总线之间的路径有关的线路。使用此概念和线路的原始阻抗,仅计算配电潮流(DLF)矩阵的对角线元素,并将其存储在单维向量中,以获得配电潮流解。与其他传统方法不同,该方法不需要任何LU分解或总线导纳矩阵。它健壮,高效,对于任何规模的分发系统都只需要很少的内存。该方法在标准的IEEE 15、31、34、69和85总线径向分配系统上进行了测试,结果令人鼓舞,在配电自动化中具有巨大的应用潜力。

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