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Simplified Big-Signal Model of Three-Phase Boost Six-Switch Rectifiers
作者姓名:YU Xiang-xu  HOU Zhen-cheng  YE Yi-lin
摘    要:A reduced-order big-signal model of three-phase pulse-width-modulation (PWM) rectifiers is proposed. The analysis and design of the three-phase boost Power Factor Correction (PFC) circuit is far more complex than the dc-to-dc converter, in that the coefficient of the state equation are time-variant. Although they become constants when in steady state in d-q frame, it is difficult to design due to the couple of the d- and q-channel. By combination of the topology transformation and Tellegen's theorem, the mains can be simplified to a boost dc-to-dc converter, thus reduce the mains' order to two, and the parameter of the simplified circuit is deduced. The proposed model can also be linearized to obtain the small-signal model. The small-signal model greatly simplifies the system design, therefore the traditional trial-and-error procedure is deserted. The contrast simulation results indicate that the simplified model can represent the low-frequency big-signal dynamic behavior of the six-switch three-phase PFC circuit.

关 键 词:power  factor  correction  modeling  three-phase  converters
修稿时间:2000/6/19 0:00:00

Simplified Big-Signal Model of Three-Phase Boost Six-Switch Rectifiers
YU Xiang-xu,HOU Zhen-cheng,YE Yi-lin.Simplified Big-Signal Model of Three-Phase Boost Six-Switch Rectifiers[J].Storage & Process,2001(2):72-75.
Authors:YU Xiang-xu  HOU Zhen-cheng  YE Yi-lin
Abstract:A reduced-order big-signal model of three-phase pulse-width-modulation (PWM) rectifiers is proposed. The analysis and design of the three-phase boost Power Factor Correction (PFC) circuit is far more complex than the dc-to-dc converter, in that the coefficient of the state equation are time-variant. Although they become constants when in steady state in d-q frame, it is difficult to design due to the couple of the d- and q-channel. By combination of the topology transformation and Tellegen's theorem, the mains can be simplified to a boost dc-to-dc converter, thus reduce the mains' order to two, and the parameter of the simplified circuit is deduced. The proposed model can also be linearized to obtain the small-signal model. The small-signal model greatly simplifies the system design, therefore the traditional trial-and-error procedure is deserted. The contrast simulation results indicate that the simplified model can represent the low-frequency big-signal dynamic behavior of the six-switch three-phase PFC circuit.
Keywords:power factor correction  modeling  three-phase converters
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