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A zero voltage transition boost converter employing a soft switching auxiliary circuit with reduced conduction losses

机译:零电压过渡升压转换器,采用软开关辅助电路,具有降低的传导损耗

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This paper presents a zero-voltage-transition (ZVT) boost converter using a soft switching auxiliary circuit for power factor correction (PFC) applications. The improvement over existing topologies lies in the positioning of the auxiliary circuit capacitors and the subsequent reduction in the resonant current and therefore the conduction losses as compared to other similar topologies. The proposed converter operates in two modes - Mode 1 and Mode 2. It is shown in the paper that the converter should be designed using the constraints obtained in Mode 1 to achieve low-loss switching. The converter is analyzed and characteristic curves presented which are then used in a detailed design example. Experimental results from a 250 W, 127 V input laboratory prototype switching at 100 kHz verify the design process and highlight the advantages of the proposed topology. The proposed converter is suitable for single-phase, two stage power factor correction circuits with universal input voltage range and power levels up to 3 kW.
机译:本文介绍了一种零电压过渡(ZVT)升压转换器,该转换器使用用于功率因数校正(PFC)应用的软开关辅助电路。与其他类似拓扑相比,对现有拓扑的改进在于辅助电路电容器的定位以及随后谐振电流的减小以及因此的传导损耗。拟议的转换器在两种模式下工作-模式1和模式2。论文表明,应使用在模式1中获得的约束条件来设计转换器,以实现低损耗开关。分析转换器并给出特性曲线,然后将其用于详细的设计示例中。 250 W,127 V输入实验室原型以100 kHz开关进行的实验结果验证了设计过程,并突出了所提出拓扑的优势。拟议的转换器适用于具有通用输入电压范围和最高3 kW功率水平的单相,两级功率因数校正电路。

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