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Analysis and Evaluation of Dual Half-Bridge Cascaded Three-Level DC–DC Converter for Reducing Circulating Current Loss

机译:双半桥级联三电平DC-DC转换器降低循环电流损耗的分析和评估

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摘要

Three-level (TL) dc-dc converters can meet high input voltage requirement. The isolated TL converters with clamping diodes and flying capacitor are the prevalent TL topologies. However, large circulating current in the primary windings may degrade the efficiency. Although many other TL converters with auxiliary components are proposed and investigated for soft switching, the auxiliary components may increase the weight and size of the converters. The dual half-bridge cascaded TL converter splits the one transformer into two, but no clamping diodes, flying capacitors, or other auxiliary components in the primary circuit, which meets the compact size requirement. In order to reduce the circulating current further, the rectifier stage with four rectifier diodes and proper sequence of the transformer windings is proposed. Because of the proper sequence of the windings, the circulating currents in the primary side of the transformers decay to zero during the freewheeling period. Although the circulating current is reduced, the primary switches still can achieve zero voltage switching without any other auxiliary circuits. Besides, the proposed converter can reduce the current ripple of the filter inductor, leading to a reduction in output filter inductance. The evaluation of the good performance in the proposed TL converter is investigated, and the proposed converter is compared with some other TL converters. The proposed one has compact sized and higher efficiency. Finally, a 1-kW prototype is built to verify the performance of the proposed converter.
机译:三级(TL)DC-DC转换器可以满足高输入电压要求。具有钳位二极管和飞跨电容器的隔离式TL转换器是常见的TL拓扑。但是,初级绕组中较大的循环电流可能会降低效率。尽管已提出并研究了许多其他带有辅助组件的TL转换器用于软开关,但是辅助组件可能会增加转换器的重量和尺寸。双半桥级联TL转换器将一个变压器分成两个,但一次电路中没有钳位二极管,飞跨电容器或其他辅助组件,这满足了紧凑的尺寸要求。为了进一步减小循环电流,提出了具有四个整流二极管和适当顺序的变压器绕组的整流级。由于绕组的正确顺序,在续流期间,变压器初级侧的循环电流衰减为零。尽管减少了循环电流,但初级开关仍可在没有任何其他辅助电路的情况下实现零电压开关。此外,提出的转换器可以减小滤波电感器的电流纹波,从而减小输出滤波电感器。研究了所提出的TL转换器的良好性能评估,并将所提出的转换器与其他一些TL转换器进行了比较。所提出的具有紧凑的尺寸和更高的效率。最后,构建了一个1kW的原型来验证所提出的转换器的性能。

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