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Frequency regulation of AUT microgrid using modified fuzzy PI controller for flywheel energy storage system

机译:用于飞轮储能系统的改进模糊PI控制器AUT Microgrid的频率调节

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Usage of flywheel energy storage system (FESS) is a common method for frequency regulation due to its high power injection capacity and long life time. FESS is equipped by two back-to-back inverters. In conventional method, the machine-side inverter sets the active power and machine flux while grid-side inverter sets the reactive power and common DC bus voltage by conventional PI current controllers. Especially for frequency regulation, FESS is constantly faced with change of power and operating point but PI controller performance is dependent on operating point of the system. In this paper, at first, the control of both active and reactive power are moved to grid-side inverter and control of DC bus voltage and machine flux are moved to machine-side inverter. Then a modified version of fuzzy PI controller is proposed for grid-side inverter control in which rated PI controller coefficients values are optimally designed for rated operating point by feed-back linearization and pole placement then fuzzy system (FS) is used for PI coefficients variation around the rated values when operating point changes. Experimental results verify the performance of the proposed FESS control system for AUT microgrid frequency regulation.
机译:飞轮储能系统(FESS)的使用是由于其高功率注入容量和长寿命的频率调节方法。 FESS由两个背靠背逆变器配备。在传统方法中,机器侧逆变器设定有源电源和机器通量,而栅极逆变器通过传统的PI电流控制器设置无功功率和公共直流母线电压。特别是对于频率调节,FES不断面临功率和操作点的变化,但PI控制器性能取决于系统的操作点。在本文中,首先,将主动和无功功率的控制移动到栅格侧逆变器,并控制直流母线电压和机器通量移动到机器侧逆变器。然后,提出了一种模糊PI控制器的改进版本,用于电网侧逆变器控制,其中额定PI控制器系数值是通过反馈线性化和极置的额定操作点最佳设计,然后模糊系统(FS)用于PI系数变化在操作点更改时归属值。实验结果验证了AUT Microgrid频率调节的拟议FESS控制系统的性能。

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