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Harmonic current elimination for single-phase rectifiers based on PR controller with notch filter

机译:基于带陷波滤波器的PR控制器的单相整流器谐波电流消除

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Single-phase PWM rectifiers have been widely used in the field of AC electric railway traction drive systems. With the single-phase rectifier powering the DC link, the instantaneous power is fluctuating at twice of the supply frequency, and so is the DC-link voltage. The consequence is that the fluctuating DC link voltage produces low order harmonics of the line current, generating detrimental effects on traction power grid and the other locomotive loads. Aiming to solve this problem, the mechanism of low order harmonic current is first derived in this paper, and the theory of notch filter and proportional-resonant (PR) controller is analyzed in detail. On the basis of theoretical analysis, a control scheme combined notch filter and PR controller is present to suppress the low order harmonics in the line current. Finally, the validity and effectiveness of the proposed scheme are verified in computer simulation.
机译:单相PWM整流器已广泛应用于交流电铁路牵引驱动系统领域。在单相整流器为直流母线供电时,瞬时功率以电源频率的两倍波动,直流母线电压也波动。结果是,波动的直流母线电压会产生线电流的低次谐波,从而对牵引电网和其他机车负载产生不利影响。为了解决这一问题,本文首先推导了低阶谐波电流的产生机理,并详细分析了陷波滤波器和比例谐振(PR)控制器的原理。在理论分析的基础上,提出了一种陷波滤波器和PR控制器相结合的控制方案,以抑制线路电流中的低次谐波。最后,在计算机仿真中验证了该方案的有效性和有效性。

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