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Stability improvement of microgrids using a novel reduced UPFC structure via nonlinear optimal control

机译:通过非线性最佳控制使用新型UPFC结构的微电网的稳定性改进

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A reduced Unified Power Flow Controller (UPFC) structure is proposed to enhance transient stability of small-scale micro grids. The micro grid utilizes Photovoltaic (PV) unit as the Distributed Generation (DG) unit that is connected to the grid through dc-dc buck converter and inverter. The dc-dc converter provides a constant dc voltage at the output that is connected to the inverter. The inverter generates the proper ac voltage according to the system requirements to feed the gird. The reduced UPFC model exploits dc link of the DG unit to generate appropriate series voltage and inject it to the power line to enhance transient stability. It employs the nonlinear discrete-time Hamilton-Jacobi-Bellman (HJB) optimal control to ensure that the stability of the system is realized through minimum cost for the system. A Neural Network (NN) is used to approximate the cost function based on the weighted residual method. In order to verify efficiency of the proposed model and control scheme, the DG unit and proposed UPFC structure are tested in simulations and experiments. The results shows effective performance of the proposed approach in damping oscillations in the system.
机译:提出了一种减少的统一电力流量控制器(UPFC)结构,以提高小规模微网格的瞬态稳定性。微电网利用光伏(PV)单元作为通过DC-DC降压转换器和逆变器连接到电网的分布式产生(DG)单元。 DC-DC转换器在连接到逆变器的输出处提供恒定的直流电压。逆变器根据系统要求产生适当的交流电压以馈送栅格。减少的UPFC模型利用DG单元的DC链路产生适当的串联电压并将其注入电源线以增强瞬态稳定性。它采用非线性离散时间汉密尔顿 - jacobi-bellman(HJB)最佳控制,以确保通过系统的最小成本实现系统的稳定性。神经网络(NN)用于基于加权残差方法近似成本函数。为了验证所提出的模型和控制方案的效率,在模拟和实验中测试了DG单元和提出的UPFC结构。结果表明,在系统中阻尼振荡中提出的方法的有效性。

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