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An Efficiency Improved Active Power Decoupling Circuit with Minimized Implementation Cost

机译:一种具有最低实现成本的改进效率的有功功率去耦电路

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Active power decoupling techniques are promising solutions for capacitance reduction in single-phase AC/DC or DC/AC systems. This paper proposes a novel circuit topology which can realize the power decoupling function without adding additional active switches into the circuit. Also, the proposed topology does not require additional passive component, e.g. inductors or film capacitors for ripple energy storage because this task can be accomplished by the dc-link capacitors themselves, and therefore its implementation cost can be minimized. Another unique feature of the proposed topology is that the current stress of power semiconductors can be reduced as compared to a conventional single-phase converter under high load operation. Therefore, the conversion efficiency can be improved and this is impossible for other existing active power decoupling circuits. The operational principle of the proposed circuit is discussed, and both simulation and experimental results are presented to show the effectiveness of the proposed circuit concept.
机译:有功功率去耦技术是减少单相AC / DC或DC / AC系统中电容的有前途的解决方案。本文提出了一种新颖的电路拓扑,该拓扑可实现电源去耦功能,而无需在电路中添加额外的有源开关。而且,所提出的拓扑不需要额外的无源组件,例如。用于纹波能量存储的电感器或薄膜电容器,因为该任务可以由直流环节电容器本身完成,因此可以将其实现成本降至最低。所提出的拓扑的另一个独特特征是,与传统的单相转换器在高负载操作下相比,功率半导体的电流应力可以降低。因此,可以提高转换效率,这对于其他现有的有功功率去耦电路是不可能的。讨论了所提出电路的工作原理,并给出了仿真和实验结果,以证明所提出电路概念的有效性。

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