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A novel load flow algorithm for radial distribution networks with dispersed generation

机译:分散发电的径向配电网潮流算法

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During the planning and designing stage of power distribution networks development, a large number of load flow calculations have to be made. The purpose of these calculations is to check if the thermal constraints and voltage limits of network elements are breached in order to comply with the EN 50160 quality standard. With the integration of distributed generation, the once passive distribution networks are rapidly changing to active networks. As a consequence, the planners have to take into consideration the bidirectional power flow in distribution networks. Also, the existing power flow algorithms for unidirectional radial distribution feeders need to adapt to new circumstances. This paper considers a new iterative algorithm for load flow calculation of a radial distribution feeder with distribution lines represented by a detailed π equivalent model including dispersed generation. In so doing, the influence on voltage profile and technical power losses is analysed in cases with and without the connection of dispersed generation. The algorithm is implemented in Matlab programming language.
机译:在配电网发展的规划和设计阶段,必须进行大量潮流计算。这些计算的目的是检查是否违反了网络元件的热约束和电压限制,以符合EN 50160质量标准。随着分布式发电的集成,曾经是被动的配电网络正迅速转变为主动网络。结果,计划者必须考虑配电网中的双向潮流。同样,用于单向径向分布馈线的现有功率流算法需要适应新的情况。本文考虑了一种新的迭代算法,用于径向分配馈线的潮流计算,其分布线由包含分散发电的详细π等效模型表示。这样,在有或没有分散发电的情况下,分析了对电压分布和技术功率损耗的影响。该算法以Matlab编程语言实现。

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