提出了一种在严重不平衡市电条件下三相三开关升压输出级整流器可靠运行的新控制概念

M. Baumann, J. Kolar
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引用次数: 9

摘要

本文从理论上和实验上研究了三相三开关buck型集成升压输出级PWM统一功率因数整流器在市电电压不平衡、缺相、两相短路或单相接地故障等严重不平衡情况下的可靠运行。对有功和失活升压输出级的有功开关状态和直流链路电流参考值的相对导通时间进行了详细的分析计算。在此基础上,提出了一种可以在任何市电条件下控制系统而不需要改变控制结构的控制方案。此外,数字仿真和实验结果证实了所提出的控制概念适用于不同的市电故障状态,以及从平衡市电到故障状态的转换,反之亦然。实验结果来源于一个5kw样机,输入电压范围为208- 480v /sub rms/线对线,输出电压为400v /sub DC/,其中控制由一个32位数字信号处理器实现。
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A novel control concept for reliable operation of a three-phase three-switch buck-type unity power factor rectifier with integrated boost output stage under heavily unbalanced mains condition
In this paper the reliable operation of a three-phase three-switch buck-type PWM unity power factor rectifier with integrated boost output stage under heavily unbalanced mains, i.e. mains voltage unbalance, loss of one phase, short circuit of two phases or earth fault of one phase is investigated theoretically and experimentally. The analytical calculation of the relative on-times of the active switching states and of the DC link current reference value is treated in detail for active and deactivated boost output stage. Based on the theoretical considerations a control scheme which allows to control the system for any mains condition without change-over of the control structure is described. Furthermore, digital simulations as well as experimental results are shown which confirm the proposed control concept for different mains failure conditions and for the transition from balanced mains to a failure condition and vice versa. The experimental results are derived from a 5 kW prototype, input voltage range 208-480 V/sub rms/ line-to-line, output voltage 400 V/sub DC/ of the rectifier system, where the control is realized by a 32-bit digital signal processor.
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