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Stability analysis of a series active filter integrated with a double-series diode rectifier

机译:与双串二极管整流集成的系列有源滤波器的稳定性分析

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This paper deals with a harmonic current-free AC/DC power conversion system which is characterized by the integration of a small-rated series active filter with a large-rated double-series diode rectifier. The stability of the active filter based on feedback control is discussed theoretically, taking into account delay time in the control circuit. As a result, it is revealed that the delay time may produce a bad effect on stability, especially when the power conversion system is installed on a stiff power system with low system inductance. The authors propose a viable way of reducing the effect of delay time on the system stability. Analysis in the frequency domain enables us to know how much the system stability is improved in terms of gain and phase margins. A switching-ripple filter is designed to obtain good filtering performance without affecting the system stability. Experimental results obtained from a 20-kW laboratory system verify the validity of the developed theory, and confirm the viability and effectiveness of the proposed control circuit.
机译:本文涉及谐波无电流AC / DC电力转换系统,其特点是将小额串联主动滤波器与大额额定双串二极管整流器的集成集成。理论上讨论了基于反馈控制的有源滤波器的稳定性,考虑到控制电路中的延迟时间。结果,揭示延迟时间可能产生对稳定性的不良影响,特别是当电力转换系统安装在具有低系统电感的硬功率系统上时。作者提出了一种可行的方法来降低延迟时间对系统稳定性的影响。频域的分析使我们能够了解在增益和相位边缘方面的系统稳定性提高了多少。开关纹波滤波器旨在获得良好的过滤性能,而不会影响系统稳定性。从20千瓦实验室系统获得的实验结果验证了发达理论的有效性,并确认了所提出的控制电路的可行性和有效性。

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