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Single phase three-level power factor correction circuit with passive lossless snubber

机译:具有无源无损缓冲器的单相三级功率因数校正电路

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摘要

Multilevel conversion techniques, power factor correction (PFC) techniques and soft switching techniques are the three research hot points of power electronics. The paper proposes a single phase three-level PFC circuit with passive lossless snubbers which embodies these trends. Firstly, the three-level buck and boost topologies are derived from one bridge leg of the traditional diode clamped three-level inverters. Then, a single phase three-level PFC circuit is presented based on the three-level boost topology, and the principle and implementation approaches of the three-level PFC circuit are described. To realize the soft switching of the main switches and freewheeling diodes, two passive lossless snubber cells are added to the circuit. The operating principle and design considerations of the new circuit are discussed in detail. Finally, a 2 kW prototype of the single phase three-level PFC with the passive lossless snubber is built and tested. The simulated and experimental results indicate that the proposed circuit can realize the function of three-level PFC, increase system efficiency and have no over-voltage stresses on main power switches. Moreover, the power factor of the proposed circuit with the passive lossless snubber is higher than that of the circuit without the snubber.
机译:多级转换技术,功率因数校正(PFC)技术和软切换技术是电力电子的三个研究热点。本文提出了一种具有无源无损缓冲器的单相三级PFC电路,体现了这些趋势。首先,三级降压和升压拓扑源自传统二极管钳位三级逆变器的一个桥腿。然后,基于三级增强拓扑显示单相三级PFC电路,并且描述了三级PFC电路的原理和实现方法。为了实现主开关和续流二极管的软切换,将两个被动无损缓冲器电池添加到电路中。详细讨论了新电路的操作原理和设计考虑。最后,建立并测试了用无源无损缓冲器的单相三级PFC的2 kW原型。模拟和实验结果表明,所提出的电路可以实现三级PFC的功能,提高系统效率,并且在主电源开关上没有过压应力。此外,具有无源无损缓冲器的所提出的电路的功率因数高于没有缓冲器的电路的功率因数。

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