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Improvement of Light Load Efficiency for Buck-Boost DC-DC converter with ZVS using Switched Auxiliary Inductors

机译:使用开关辅助电感器的ZVS提高Buck-Boost DC-DC转换器的轻载效率

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This paper proposes a changing buck-boost inductance for non-isolated bidirectional buck-boost DC-DC converter with zero voltage switching (ZVS) modulation in order to achieve high efficiency at wide load region and a wide voltage variation. In the proposed converter, the auxiliary inductor and the bidirectional switch are connected in parallel to a main inductor, and each connection is switched depending on the load condition. At the light load region, the bi-directional switch is turned off for the reduction of the converter loss with the large equivalent inductance. On the other hands, the auxiliary circuit is utilized at the heavy load region in order to extend the power translation range with the small equivalent inductance. In addition, the sequence for the switching auxiliary inductor is also proposed in order to prevent the surge voltage of the bidirectional switch and the DC offset current in the auxiliary inductor. From the experimental results, the root mean square value of the inductor current is reduced by up to 23.8% compared with that of the conventional converter. In addition, the validity of the proposed sequence is also confirmed, e.g. no surge voltage at the turn off of the auxiliary inductor. Moreover, 41% of the converter loss reduction at the light load region.
机译:本文针对零电压开关(ZVS)调制的非隔离双向降压-升压DC-DC转换器提出了一种变化的降压-升压电感,以便在宽负载区域和宽电压变化范围内实现高效率。在提出的转换器中,辅助电感器和双向开关与主电感器并联连接,并且每个连接根据负载条件进行切换。在轻载区域,双向开关被关闭,以减少具有大等效电感的转换器损耗。另一方面,在重负载区域使用辅助电路,以便以较小的等效电感扩展功率转换范围。此外,还提出了用于切换辅助电感器的顺序,以防止双向开关的浪涌电压和辅助电感器中的直流偏置电流。从实验结果来看,与常规转换器相比,电感器电流的均方根值降低了高达23.8%。另外,还证实了所提出的序列的有效性,例如。辅助电感器关闭时无浪涌电压。此外,在轻载区域的转换器损耗降低了41%。

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