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Frequency-Selective Impedance Control for DC Microgrids

机译:直流微电网的频率选择阻抗控制

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In this paper a novel impedance control technique is developed. The technique is aimed to suppress the steady-state ripples of a micro grid's DC-bus voltage, caused by load's current harmonics. The effect is achieved by lowering the bus impedance at the selected frequencies, that correspond to the frequency spectrum of the loads. The frequency-selective impedance control (FSIC) is implemented by increase of the voltage-loop gain at the specified frequencies using the cascade of the resonance-type controllers (R-controllers). The R-controllers are tuned to the parameters of the distortion. Since the oscillation frequency of the R-controller isn't restricted by the voltage-loop's bandwidth, the control capabilities of a power converter are extended up to its Nyquist frequency. An approach to configure the R-controllers is developed. The effectiveness of the technique is proved by the experiments at the DC micro grid prototype. The experiments demonstrate a significant reduction of the bus voltage ripples under the FSIC.
机译:本文开发了一种新的阻抗控制技术。该技术旨在抑制由负载电流谐波引起的微电网直流电压的稳态波纹。通过降低所选择的频率的总线阻抗来实现效果,其对应于负载的频谱。频率选择阻抗控制(FSIC)通过使用谐振型控制器(R控制器)的级联增加指定频率下的电压环增益来实现。 R控制器调谐到失真的参数。由于R-Controller的振荡频率不受电压环的带宽限制,因此功率转换器的控制能力延伸到其奈奎斯特频率。开发了一种配置R控制器的方法。通过DC微网格原型的实验证明了该技术的有效性。实验表明,FSIC下的总线电压纹体的显着降低。

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