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Resonant Controllers Design for Frequency-Selective Impedance Controlled DC Microgrids

机译:用于频率选择阻抗控制DC微电网的谐振控制器设计

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The resonant-type controllers are commonly used in dc microgrids in order to suppress the steady-state ripples of a microgrid's dc bus voltage. As the resonant controllers are prone to cause instability issues and anomalous peaks in closed-loop frequency responses, it is of particular importance to investigate it thoroughly for the frequency-selective impedance controlled (FSIC) dc microgids, where the cascade of the resonant-type controllers is used in control of the interfacing power converters to reduce the bus's impedance at the selected frequencies. In this paper, based on the Nyquist plots analysis results, design of the FSIC resonant controllers is carried out and a step-by-step design procedure is proposed to ensure stability and no impedance peaking nearby the FSIC's frequencies. The proposed design is verified through the experiments.
机译:谐振型控制器通常用于DC微电网中,以抑制微电网的直流母线电压的稳态纹波。 由于谐振控制器易于导致闭环频率响应中的不稳定性问题和异常峰值,因此为频率选择阻抗控制(FSIC)DC微生物谱进行彻底调查速度型,其中谐振型级联 控制器用于控制接口功率转换器,以减少所选择的频率的总线阻抗。 在本文中,基于奈奎斯特曲线分析结果,进行了FSIC谐振控制器的设计,提出了一种逐步的设计程序,以确保FSIC频率附近的稳定性且没有阻抗峰值。 通过实验验证了所提出的设计。

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