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Proportional-Resonant Current Control for VIENNA Rectifier in Stationary αβ Frame

机译:固定αβ框架中VIENNA整流器的比例谐振电流控制

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For three level VIENNA rectifier, several low-order harmonics will emerge in the input current due to the distortion near the zero-crossing point and the fluctuation in the output voltage. In this paper, a new control strategy, including a dual-loop and a balance loop is established based on the state-space average model in stationary αβ frame to achieve reduced input current harmonics. As to the inner current loop, the proportional-resonant(PR) control is selected for it does not require complicated frame transformation and can track the AC signals with zero error. Moreover, the design of the PR controllers is discussed in detail according to the Bode diagram. During the process of discretization, the Tustin with pre-warping is preferred considering the resonant peak displacement. Finally, the correctness and effectiveness of the proposed control scheme are verified by simulation and experiment results.
机译:对于三电平VIENNA整流器,由于过零点附近的失真和输出电压的波动,在输入电流中会出现一些低阶谐波。本文基于稳态αβ框架中的状态空间平均模型,建立了一种包括双环和平衡环的控制策略,以减少输入电流的谐波。对于内部电流环路,选择比例谐振(PR)控制是因为它不需要复杂的帧变换,并且可以以零误差跟踪AC信号。此外,根据伯德图详细讨论了PR控制器的设计。在离散化过程中,考虑到共振峰位移,首选带预变形的Tustin。最后,通过仿真和实验结果验证了所提控制方案的正确性和有效性。

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