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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Three-Phase Single-Switch DCM Boost PFC Converter With Optimum Utilization Control of Switching Cycles
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Three-Phase Single-Switch DCM Boost PFC Converter With Optimum Utilization Control of Switching Cycles

机译:具有开关周期最佳利用控制的三相单开关DCM Boost PFC转换器

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摘要

A three-phase single-switch discontinuous conduction mode (DCM) boost power factor correction (PFC) converter features zero-current turn on for the switch, no reverse recovery in the diode, a constant-switching-frequency operation, a simple control, and a low cost, which are suitable for low-to-medium-power and cost-sensitive applications. Due to the DCM, the energy transfer does not cover the whole switching cycle, the rms and peak values of the inductor current are large, and those of the switch and the diode are also large. This increases not only the current stress of the power components but also the conduction and switching turn-off losses, which lower the efficiency of the converter. An optimum utilization control of switching cycles is proposed in this paper to increase the critical boost inductance. The rms and peak current values of the main power components are reduced, and the conduction and switching turn-off losses are therefore decreased, leading to higher efficiency. The proposed method also slightly achieves an output voltage ripple reduction, and the input current harmonics comply with the standard of the International Electrotechnical Commission 61000-3-2 Class A.
机译:三相单开关不连续导通模式(DCM)升压功率因数校正(PFC)转换器具有开关的零电流导通,二极管无反向恢复,恒定开关频率工作,简单控制,和低成本,适合中低功率和成本敏感的应用。由于采用DCM,能量传输无法覆盖整个开关周期,电感电流的均方根值和峰值很大,而开关和二极管的均方根值和峰值也很大。这不仅增加了功率部件的电流应力,而且还增加了导通和开关关断损耗,从而降低了转换器的效率。本文提出了一种最佳的开关周期利用控制,以提高临界升压电感。主要功率组件的均方根值和峰值电流值减小,因此导通和开关关断损耗减小,从而提高了效率。所提出的方法还可以稍微降低输出电压纹波,并且输入电流谐波符合国际电工委员会61000-3-2 Class A的标准。

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