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New control scheme for 3-phase PWM AC/DC converter without phase angle detection under unbalanced input voltage conditions

机译:输入电压不平衡条件下无需相位角检测的三相PWM AC / DC转换器新控制方案

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Generally, most of 3-phase PWM AC/DC converters have been implemented in the synchronous frame model to eliminate steady state errors effectively and have fast transient response characteristics. But such designed controllers have input current harmonics and DC-link voltage ripples under unbalanced input voltage conditions because they have been designed under assumption of balanced input voltage conditions. In this paper, the new control scheme is designed to minimize harmonic distortions of the input current and the output DC-link voltage in 3-phase PWM AC/DC converter systems under unbalanced input voltage conditions. The synchronous frame input voltage, which is considered as input side back-EMF component, is regulated pertinently according to input voltage condition. Where, the analysis of the input voltage is implemented without zero crossing and magnitude detecting of each phase voltage. The current reference is selected to eliminate the reactive power and the harmonic active power. The proposed control scheme is simple and minimizes effectively the harmonic distortions in input and output system under unbalanced input voltage conditions.
机译:通常,大多数三相PWM AC / DC转换器已在同步帧模型中实现,以有效消除稳态误差并具有快速的瞬态响应特性。但是,这种设计的控制器在不平衡的输入电压条件下具有输入电流谐波和直流母线电压纹波,因为它们是在假定平衡的输入电压条件下设计的。在本文中,新的控制方案旨在在不平衡输入电压条件下将三相PWM AC / DC转换器系统中输入电流和输出DC链路电压的谐波失真降至最低。同步帧输入电压(被视为输入侧反电动势组件)将根据输入电压条件进行适当调节。其中,无需对每个相电压进行零交叉和幅度检测即可实现对输入电压的分析。选择电流基准以消除无功功率和谐波有功功率。所提出的控制方案简单,并且在不平衡输入电压条件下有效地最小化了输入和输出系统中的谐波失真。

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