A robust multi-resonant PR regulator for three-phase grid-connected VSI using direct pole placement design strategy

Bin Li, Ming Zhang, Long Huang, L. Hang, L. Tolbert
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引用次数: 16

Abstract

An averaged switching model of grid-connected inverter using dual-loop current control with LCL-filter in discrete domain is built under stationary frame. A proportional resonant (PR) regulator is adopted in the current-loop to track the given fundamental sinusoidal current without steady state error. In addition, in order to reduce the low frequency harmonics, the resonance of 5th harmonics is adopted. Because the system is of high order and complex, the theory of root locus is proposed to analyze the influence of parameters in PR regulator, the influence of digital delay, and the LCL-filter. Based on the theoretical analysis, the poles can be properly selected to guarantee the stability of the system and the performance of current-loop during wide grid-fed power. Finally, a 10 kW prototype of grid-connected inverter with LCL-filter is set up to verify the effectiveness, practicality, and robustness of the proposed design method.
采用直接极位设计策略的三相并网VSI鲁棒多谐振PR调节器
在固定框架下,建立了采用离散域lcl滤波的双环电流控制并网逆变器的平均开关模型。在电流环中采用比例谐振(PR)调节器来跟踪给定的基波正弦电流,无稳态误差。此外,为了减少低频谐波,采用了五次谐波共振。针对系统的高阶性和复杂性,提出了根轨迹理论来分析PR调节器参数、数字延迟和lcl滤波器的影响。在理论分析的基础上,合理选择极点可以保证系统的稳定性和大电网供电时电流环的性能。最后,搭建了一个10 kW的lcl滤波器并网逆变器样机,验证了所提设计方法的有效性、实用性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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