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Discrete model predictive frequency and voltage control of isolated micro-grid in smart grid scenario

机译:智能电网情景下的隔离微电网离散模型预测频率和电压控制

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In an isolated micro-grid electronically interfaced DG (EI-DG) units should also participate in frequency and voltage control along with synchronous generator based DG (SG-DG) units to ensure power quality and stability of the micro-grid. The conventional way of controlling frequency and voltage is to balance active power and reactive power of the system by implementing droop characteristics (P-f, Q-V) for EI-DG units with PI controllers and automatic generation control (AGC) and automatic voltage regulator (AVR) for SG-DG units. With the advent of smart micro-grids, a centralized control for both frequency and voltage using model predictive controller (MPC) is an alternative to the conventional controllers. The optimization capabilities of MPC make it suitable for frequency and voltage control of micro-grids equipped with fast and reliable communication. This paper investigates the performance of a centralized discrete model predictive controller (DMPC) in an isolated micro-grid with photovoltaic (PV) and diesel generators. The small signal dynamic models of the PV converter and SG-DG are considered in the design of the DMPC. The micro-grid network and loads are represented using steady state power balance equations. The performance of the DMPC is tested using MATLAB software package.
机译:在隔离的微电网中,电子接口的DG(EI-DG)单元还应与基于同步发电机的DG(SG-DG)单元一起参与频率和电压控制,以确保微电网的电能质量和稳定性。控制频率和电压的常规方法是通过为带有PI控制器,自动发电控制(AGC)和自动电压调节器(AVR)的EI-DG单元实现下垂特性(Pf,QV),从而平衡系统的有功功率和无功功率用于SG-DG单元。随着智能微电网的出现,使用模型预测控制器(MPC)对频率和电压进行集中控制已成为传统控制器的替代选择。 MPC的优化功能使其适用于具有快速可靠通信功能的微电网的频率和电压控制。本文研究了带有光伏(PV)和柴油发电机的隔离微电网中集中式离散模型预测控制器(DMPC)的性能。 DMPC的设计中考虑了PV转换器和SG-DG的小信号动态模型。微电网和负荷用稳态功率平衡方程表示。使用MATLAB软件包对DMPC的性能进行了测试。

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