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A Droop-Based Diesel Generator Emulator for Microgrid Frequency Control Studies

机译:基于下垂的柴油发电机仿真器,用于微电网频率控制研究

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摘要

In laboratory-scale studies, researchers usually prefer to use diesel generator emulator, instead of real diesel generator due to its flexibility in parameters design. Using diesel generator emulator, the behavior of a real diesel generator is emulated by a voltage source converter with voltage and current control loops ind-qframe. In this paper, an inverter-based prototype of a simple diesel generator emulator is presented for frequency variation studies in laboratory-scale microgrids. The proposed control system includes two separated paths for frequency and voltage. In the first path, two cascaded voltage and current control loops ind-qframe are employed to regulate the voltage like AVR system. In the second path, a proposed transfer function and aP-fdroop curve are used to generate the reference frequency for inverse park transformation considering the transfer functions of prim-mover, governor and synchronous machine. The real diesel generator and the diesel generator emulator are simulated in MATLAB/Simulink software and compared to investigate the proposed control system. Also the experimental results verify the performance of the implemented prototype of the proposed diesel generator emulator in AUT microgrid.
机译:在实验室规模研究中,研究人员通常更喜欢使用柴油发电机仿真器,而不是真正的柴油发电机,因为它在参数设计中的灵活性。使用柴油发电机仿真器,通过电压和电流控制回路的电压源转换器模拟真实柴油发电机的行为。本文介绍了一种简单的柴油发电机仿真器的逆变器原型,用于实验室级微普林的频率变化研究。所提出的控制系统包括两个分离的频率和电压路径。在第一路径中,采用两个级联电压和电流控制循环循环QFrame来调节AVR系统等电压。在第二路径中,考虑到Prim-MOVER,调速器和同步机的传递函数,建议的传递函数和AP-FDROOP曲线用于为反向驻地变换产生参考频率。真正的柴油发电机和柴油发电机仿真器在Matlab / Simulink软件中模拟,并与研究所提出的控制系统相比。实验结果还验证了AUT MicroGrid中所提出的柴油发电机仿真器的实施原型的性能。

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