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Fast-decoupled power flow method for integrated analysis of transmission and distribution systems

机译:快速分离的电流用于传输和分配系统的综合分析

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摘要

The growing participation of distributed generation in the electricity supply along with the advances in smart grid technologies have emphasized the active role of distribution systems and their more complex interaction with the transmission system. As a consequence, the operation of the power grid requires closer coordination between transmission and distribution systems. This paper proposes an integrated analysis that allows a unique power flow method to be effectively applied to any voltage level of the power system, from the high-voltage bulk transmission network to the low-voltage distribution feeders. The proposed methodology combines the decoupled power flow approach and complex per unit normalization technique to efficiently deal with the high dimension of unified network analysis and the different characteristics of transmission and distribution networks, regarding line parameters and topological arrangements. Simulations are conducted in an integrated T&D network, and in a large primary-secondary distribution system as well. The results demonstrate the effectiveness of the proposed approach and attest the relevance of integrated power flow analyzes to adequately determine the interrelationships between the different operating levels of the electrical network.
机译:随着智能电网技术的进步,分布式发电的日益增长的参与已经强调了分配系统的积极作用及其与传输系统的更复杂的交互。结果,电网的操作需要更接近传输和分配系统之间的协调。本文提出了一种综合分析,其允许从高压批量传输网络到低压配电馈电器的电力系统的任何电压电平有效地应用于独特的功率流量。所提出的方法结合了解耦功率流方法和复杂的每单位标准化技术,以有效地处理统一网络分析的高维度和传输和分配网络的不同特征,关于线参数和拓扑布置。模拟在集成的T&D网络中进行,并在大型初级二级分配系统中进行。结果证明了所提出的方法的有效性并证明综合电力流量分析的相关性,以充分确定电网不同运行水平之间的相互关系。

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