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A Fully ZVS Critical Conduction Mode Boost PFC

机译:完全ZVS临界传导模式升压PFC

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Boost converter operating in critical conduction mode is widely used in low-power power factor corrector because of its simplicity and low switching losses. The switching loss due to parasitic capacitor discharge at the on-time instant can also be reduced by a valley switching technique. In this paper, we introduce a new driver topology for the high-side switch in a synchronous boost converter operating in the critical conduction mode to obtain full zero-voltage switching. Using the proposed high-side driver topology, the conventional control circuit is sufficient to control the low-side switch, and no additional control circuit is required to adjust the timing of the switches. Finally, the line current distortion is reduced through the use of on-time extension technique to less than 10% in the defined load range. Based on approximate mathematical calculations, two separate distortion reduction circuits are designed to implement the on-time extension technique for both voltage-mode and current-mode control methods.
机译:在临界导通模式下工作的升压转换器由于其简单性和低开关损耗而被广泛用于低功率功率因数校正器中。还可以通过谷值开关技术来减少由于导通时间瞬间寄生电容器放电而引起的开关损耗。在本文中,我们介绍了一种新的驱动器拓扑结构,用于在临界导通模式下工作的同步升压转换器中的高端开关,以获得完全零电压开关。使用提出的高端驱动器拓扑,常规控制电路足以控制低端开关,并且不需要额外的控制电路来调整开关的时序。最后,通过使用导通时间扩展技术,可将线路电流失真在规定的负载范围内降低至小于10%。基于近似数学计算,设计了两个单独的失真减小电路,以针对电压模式和电流模式控制方法实施导通时间扩展技术。

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