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An Iterative Scheme for the Power-Flow Analysis of Distribution Networks based on Decoupled Circuit Equivalents in the Phasor Domain

机译:基于分散电路等效于量域的分发网络电流分析的迭代方案

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摘要

This paper presents an alternative solution for the power-flow analysis of power systems with distributed generation provided by heterogeneous sources. The proposed simulation approach relies on a suitable interpretation of the power network in terms of a nonlinear circuit in the phasor domain. The above circuit interpretation can be solved directly in the frequency-domain via the combination of a standard tool for circuit analysis with an iterative numerical scheme, providing directly the steady-state solution of the power-flow of a generic distribution network. At each iteration, the resulting circuit turns out to be composed by two decoupled subnetworks, a large linear part and a set of smaller nonlinear pieces accounting for the load characteristics, with evident benefits in terms of the computational time. The feasibility and strength of the proposed simulation scheme have been verified on a large benchmark consisting of the IEEE 8500-node test feeder. Then it is applied to the statistical simulation of a power network accounting for the variability effects of renewable generators. According to the results, the proposed tool provides an effective alternative to the state-of-the-art approaches for power-flow analysis further highlighting the benefits of the application of well-established tools for circuit analysis to power-flow problems.
机译:本文介绍了具有异构来源提供的分布式发电的电力系统的电力流动分析的替代解决方案。所提出的仿真方法依赖于Phasor域中的非线性电路的功率网络的合适解释。可以通过使用迭代数值方案的电路分析的标准工具的组合直接在频域中直接在频域中解决上述电路解释,直接提供通用分配网络的电流的稳态解决方案。在每次迭代时,所得到的电路旨在由两个分离的子网,大线性部分和一组较小的非线性块组成,占负载特性,在计算时间方面具有明显的效益。在由IEEE 8500节点测试馈线组成的大型基准测试中验证了所提出的仿真方案的可行性和强度。然后应用于电网统计算法,用于可再生发电机的可变性效应。根据结果​​,该拟议的工具提供了有效的替代技术,用于发电分析的最先进方法,进一步突出了应用良好建立的电路分析工具对电流问题的好处。

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