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Microgrid frequency stabilization using model predictive controller

机译:使用模型预测控制器的微电网频率稳定

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A reliable and economical/green microgrid is the major focus area of the modern power system. These are operating as controllable system either singly in isolated mode or collectively in grid connected mode. The reliability of the microgrid is a major concern which is threatened by the load fluctuations and intermittent renewable energy penetration. This paper presents the frequency stabilization in a microgrid under solar penetration and load fluctuation. This microgrid frequency stabilization is based on model predictive controller (MPC). The battery energy storage (BES) with charging/discharging and its controlled state of charge (SoC) is used for primary frequency control. The frequency prediction is also carried out in order to enhance the performance of the MPC controller. A comparison between the PI controller and MPC is made for frequency deviation in MATLAB/Simulink environment. The simulation results depict the effectiveness of the MPC in frequency stabilization.
机译:可靠,经济/绿色的微电网是现代电力系统的重点领域。它们分别以隔离模式或以电网连接模式作为可控系统运行。微电网的可靠性是一个主要问题,受到负荷波动和间歇性可再生能源渗透的威胁。本文介绍了在太阳穿透和负载波动下微电网的频率稳定。此微电网频率稳定度基于模型预测控制器(MPC)。具有充电/放电功能的电池能量存储(BES)及其受控的充电状态(SoC)用于一次频率控制。为了提高MPC控制器的性能,还进行了频率预测。比较了PI控制器和MPC在MATLAB / Simulink环境中的频率偏差。仿真结果说明了MPC在频率稳定方面的有效性。

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