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Exploiting the Radial Distribution Structure in Developing a Fast and Flexible Radial Power Flow for Unbalanced Three-Phase Networks

机译:在不平衡三相网络中开发快速灵活的径向潮流中的径向分布结构

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摘要

The radial distribution network structure is exploited in developing a fast and flexible radial power flow (FFRPF) solution technique. The cornerstone of this technique is constructing one single building block matrix, called the radial configuration matrix (RCM), which is utilized in carrying out the radial power flow backward/forward iterative steps. The RCM is designed to have a small condition number with a determinant and all of its eigenvalues be equal to one to ensure its invertibility. By incorporating this matrix and its direct descendant matrices in solving the power flow problem, the CPU execution time is decreased compared with other methods. The FFRPF method is flexible in accommodating any changes that may take place in an existing radial distribution system since these changes can be exclusively incorporated within this matrix. The FFRPF is tested by using several balanced and unbalanced three-phase radial distribution systems.
机译:在开发快速灵活的径向功率流(FFRPF)解决方案技术时,采用了径向配电网结构。该技术的基础是构建一个称为径向配置矩阵(RCM)的单个构造块矩阵,该矩阵用于执行径向功率流的后向/正向迭代步骤。 RCM被设计为具有一个行列式的小条件数,并且其所有特征值均等于1以确保其可逆性。通过合并该矩阵及其直接后代矩阵来解决潮流问题,与其他方法相比,CPU执行时间得以减少。 FFRPF方法可以灵活地适应现有径向分布系统中可能发生的任何变化,因为这些变化可以专门包含在此矩阵中。通过使用多个平衡和不平衡的三相径向配电系统对FFRPF进行了测试。

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