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New Stationary Frame Control Scheme for Three Phase PWM Rectifiers Under Unbalanced Voltage Dips Conditions

机译:不平衡电压骤降条件下三相PWM整流器的新固定帧控制方案

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摘要

A new stationary frame control scheme for three-phase pulsewidth-modulation (PWM) rectifiers operating under unbalanced voltage dips conditions is proposed in this paper. The proposed control scheme regulates the instantaneous active power at the converter poles to minimize the harmonics of the input currents and the output voltage ripple. This paper's novelty is the development of a new current-reference generator implemented directly in stationary reference frame. This allows using proportional sinusoidal signal integrator (P-SSI) controllers for simultaneous compensation of both positive and negative current sequence components. No phase-locked loop (PLL) strategies and coordinate transformations are needed for the proposed current-reference generator. Experimental results are presented for a 20-kV A alternative current (ac)/direct current (dc) converter prototype to demonstrate the effectiveness of the proposed control scheme. A comparison with two other existing control techniques is also performed. Fast dynamic performance with small dc-link voltage ripple and input sinusoidal currents are obtained with this control scheme, even under severe voltage dips operating conditions
机译:提出了一种在不平衡电压骤降条件下运行的三相脉宽调制(PWM)整流器的新型平稳框架控制方案。提出的控制方案可调节转换器极点的瞬时有功功率,以最大程度地减少输入电流和输出电压纹波的谐波。本文的新颖之处在于直接在固定参考框架中实现的新型电流参考发生器的开发。这允许使用正弦正弦信号积分器(P-SSI)控制器同时补偿正负电流序列分量。提出的电流参考发生器不需要锁相环(PLL)策略和坐标变换。给出了20 kV A交流(ac)/直流(dc)转换器原型的实验结果,以证明所提出的控制方案的有效性。还与其他两种现有控制技术进行了比较。通过这种控制方案,即使在严重的电压骤降工作条件下,也可以获得具有小直流链路电压纹波和输入正弦电流的快速动态性能

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