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Three-phase AC/DC power-flow for balanced/unbalanced microgrids including wind/solar, droop-controlled and electronically-coupled distributed energy resources using radial basis function neural networks

机译:平衡/不平衡微电网的三相AC / DC功率流,包括使用径向基函数神经网络的风/太阳能,压降控制和电子耦合分布式能源

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摘要

This study presents a novel approach for robust, balanced and unbalanced power-flow analysis of microgrids including wind/solar, droop-controlled and electronically-coupled distributed energy resources. This method is based on using radial basis function neural networks that can be applied to a wide range of non-linear equation sets. Unlike conventional Newton-Raphson, the presented method does not need to calculate partial derivatives and inverse Jacobian matrix and so, has less computation time, can solve all the equation sets for the power grid and distributed energy resources exactly and simultaneously, and has enough robustness with respect to the R/X ratio and load changes. Also, because the power electronic interface provides some degrees of freedom in the steady-state and dynamic models, a new approach is required to solve the non-linear set of the power grid and distributed energy resource equations even with unequal number of equations and variables. The proposed method is a general method applicable to all types of power networks, including radial, meshed, and open-loop, and includes all types of buses, i.e. PQ, photovoltaic and slack buses. This method is tested on different microgrid test systems, and the comparative results validate its efficiency and accuracy.
机译:这项研究为微电网的鲁棒,平衡和不平衡功率流分析提供了一种新颖的方法,包括风/太阳能,下垂控制和电子耦合的分布式能源。这种方法是基于使用径向基函数神经网络的,该神经网络可以应用于广泛的非线性方程组。与传统的牛顿-拉夫森方法不同,该方法不需要计算偏导数和逆雅可比矩阵,因此计算时间更少,可以准确,同时求解电网和分布式能源的所有方程组,并且具有足够的鲁棒性。关于R / X比率和负载变化。此外,由于电力电子接口在稳态和动态模型中提供了一定程度的自由度,因此即使方程和变量的数量不相等,也需要一种新的方法来求解电网的非线性集和分布式能源方程。所提出的方法是适用于所有类型的电力网络的通用方法,包括径向,网格和开环,并且包括所有类型的总线,即PQ,光伏和松弛总线。该方法在不同的微电网测试系统上进行了测试,比较结果验证了其有效性和准确性。

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