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Control of Three-Phase Boost-Type PWM Rectifier in Stationary Frame Under Unbalanced Input Voltage

机译:输入电压不平衡情况下固定框架三相Boost型PWM整流器的控制

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摘要

In the last decade, many methods for control of three-phase boost-type pulsewidth modulation (PWM) rectifier under unbalanced input voltage conditions have been studied and presented. These methods use the sequential components of input voltages, pole voltages, and input currents of the rectifier to analyze and control the instantaneous powers, of which dual (positive-sequence and negative-sequence rotating) frame control is the most common structure. Anyway, this paper analyzes the instantaneous powers of the PWM rectifier in two-phase stationary frame. Based on this analysis, the input-power-control, input-output-power-control, and output-power-control methods for PWM rectifier under unbalanced voltage conditions are proposed in single stationary frame. Compared with the existing methods, simplicity may be the major advantage of the method in this paper. Rotating transformation and phase detection of the input voltages are both eliminated. Moreover, sequential component extraction of the control variables is also not necessary, leading to much reduced time delay to the control system. Experimental results on a 9-kVA PWM rectifier show validity and effectiveness of the proposed methods.
机译:在过去的十年中,已经研究并提出了许多在不平衡输入电压条件下控制三相升压型脉宽调制(PWM)整流器的方法。这些方法使用输入电压,极电压和整流器输入电流的顺序分量来分析和控制瞬时功率,其中双(正序和负序旋转)帧控制是最常见的结构。无论如何,本文分析了两相固定框架中PWM整流器的瞬时功率。在此基础上,提出了在单个固定框架下不平衡电压条件下PWM整流器的输入功率控制,输入输出功率控制和输出功率控制方法。与现有方法相比,简单性可能是本文方法的主要优点。消除了输入电压的旋转变换和相位检测。此外,也不需要顺序提取控制变量,从而大大减少了控制系统的时间延迟。在9 kVA PWM整流器上的实验结果表明了所提方法的有效性。

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