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Zero Ripple Current AC-DC Converters to Minimize Input Filter

机译:零纹波电流AC-DC转换器以最小化输入滤波器

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In this paper, a boost topology with a coupled inductor to achieve zero-ripple input current for power factor correction (PFC) application is proposed. By using a coupled inductor as the PFC transformer, this topology not only can comply with any standards or regulations, but it also provides clean power in a universal ac line (90 Vac to 264 Vac). The zero ripple current PFC topology is designed to work in critical conduction mode (DCM boundary) to eliminate diode reverse recovery loss and provide automatic control. This is done so that the complexity of the controller is reduced; the control strategy of PFC stage is similar to that of a conventional boost converter. By using a coupled inductor boost topology, one can remove electromagnetic interference (EMI) filter without sacrificing the input current harmonics. Consequently, smaller passive components can be used, and a lighter weight and lower cost can be achieved. Experimental results are given to confirm the theoretically predicted behaviour.
机译:本文提出了一种具有耦合电感的升压拓扑,以实现零纹波输入电流,以用于功率因数校正(PFC)应用。通过使用耦合电感器作为PFC变压器,此拓扑不仅可以符合任何标准或法规,而且还可以在通用交流线路(90 Vac至264 Vac)中提供干净的电源。零纹波电流PFC拓扑设计为在临界导通模式(DCM边界)下工作,以消除二极管反向恢复损耗并提供自动控制。这样做是为了降低控制器的复杂性。 PFC级的控制策略与传统的升压转换器相似。通过使用耦合电感器升压拓扑,可以在不牺牲输入电流谐波的情况下去除电磁干扰(EMI)滤波器。因此,可以使用更小的无源部件,并且可以实现更轻的重量和更低的成本。实验结果证实了理论上的预期行为。

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