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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Five-Level Multiple-Pole PWM AC–AC Converters With Reduced Components Count
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Five-Level Multiple-Pole PWM AC–AC Converters With Reduced Components Count

机译:减少组件数量的五级多极PWM AC-AC转换器

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摘要

This paper proposes novel multilevel ac/dc/ac converters with reduced number of semiconductor devices to achieve light weight, efficiency, and better input current quality. The proposed three-phase front-end bidirectional five-level (5L) rectifier and rear-end 5L inverter are constructed based on multiple-pole multilevel diode-clamped (MDCC) approach, which consist a total number of 24 diode components clamped. Based on the MDCC concept, the number of switching devices can be further reduced to construct a new unidirectional front-end rectifier (MSCR). Comparative studies are conducted to analyze the performances of the two proposed front-end rectifiers with supportive mathematical derivations. Experimental prototypes have proven the feasibility of the proposed ac/dc/ac configurations. Results obtained show that low current harmonic distortions of 5% and high power factor of 0.99 are achieved with small input inductors despite low-switching-frequency operation at 1 kHz.
机译:本文提出了一种新型的多电平交流/直流/交流转换器,减少了半导体器件的数量,从而实现了轻量化,高效率和更好的输入电流质量。拟议的三相前端双向五电平(5L)整流器和后端5L逆变器是基于多极多电平二极管钳位(MDCC)方法构建的,该方法总共钳位了24个二极管组件。基于MDCC概念,可以进一步减少开关器件的数量,以构建新的单向前端整流器(MSCR)。进行了比较研究,以支持的数学推导来分析两个建议的前端整流器的性能。实验原型已经证明了建议的交流/直流/交流配置的可行性。获得的结果表明,尽管开关频率为1 kHz,但使用小输入电感器仍可实现5%的低电流谐波失真和0.99的高功率因数。

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