VIENNA rectifier II-a novel single-stage high-frequency isolated three-phase PWM rectifier system

J. Kolar, U. Drofenik, F. Zach
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引用次数: 133

Abstract

Based on an analysis of basic realization possibilities, the structure of the power circuit of a new single-stage three-phase boost-type PWM rectifier system (VIENNA Rectifier II) is developed. This system has continuous sinusoidal time behavior of the input currents and high-frequency isolation of the output voltage which is controlled in a highly dynamic manner. As compared to a conventional two-stage realization, this system has substantially lower complexity and allows to realize several isolated output circuits with minimum effort. The basic function of the new PWM rectifier system is described based on the conducting states occurring within a pulse period. Furthermore, a straightforward space vector oriented method for the system control is proposed which guarantees a symmetric magnetization of the transformer. Also, it makes possible a sinusoidal control of the mains phase currents in phase with the associated phase voltages. By digital simulation the theoretical considerations, the stresses on the power semiconductors of the new converter system are determined. Finally, problems of a practical realization of the system are discussed, as well as the direct start-up and the short circuit protection of the converter. Also, the advantages and disadvantages of the new converter system are compiled in the form of an overview.
维也纳整流器ii -一种新型的单级高频隔离三相PWM整流器系统
在分析基本实现可能性的基础上,提出了一种新型单级三相升压型PWM整流器系统(VIENNA rectifier II)的电源电路结构。该系统具有输入电流的连续正弦时间特性和输出电压的高频隔离,并以高度动态的方式进行控制。与传统的两阶段实现相比,该系统的复杂性大大降低,并且可以以最小的努力实现多个隔离输出电路。基于脉冲周期内的导通状态描述了新型PWM整流系统的基本功能。此外,还提出了一种直接的空间矢量定向控制方法,以保证变压器的对称磁化。此外,它使与相电压相对应的电源相电流的正弦控制成为可能。通过数字仿真,从理论上考虑,确定了新型变换器系统功率半导体的应力。最后讨论了该系统的实际实现问题,以及变流器的直接启动和短路保护。并以概述的形式对新变流器系统的优缺点进行了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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