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DCM Analysis of Single-Switch-Based ZVZCS Converters With a Tapped Inductor

机译:具有抽头电感的基于单开关的ZVZCS转换器的DCM分析

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The analysis of a novel single-active-switch-based zero voltage and zero current switching (ZVZCS) tapped boost converter in the discontinuous conduction mode (DCM) is proposed in this paper. The ZVZCS converter includes a lossless snubber composed of three diodes and two capacitors and exhibits novel ZVZCS operation for wide operating ranges of duty cycles, load currents, and input voltages. The voltage stress of the active switch is always less than the load voltage, and soft switching turn-on and turn-off are achieved without cumbersome current or voltage sensing, which could not have been obtained from quasi-resonant converters that also have an active switch. Detailed analyses of the DCM and the component stresses of the proposed converter are presented. Experiments for a 450-W prototype exhibited 99.0% of the maximum efficiency with a SiC JFET at the switching frequency of 50 kHz, and the ZVZCS operation is guaranteed, even for the DCM under the experimental conditions. Moreover, the proposed ZVZCS principle has been applied to a tapped buck–boost converter case, which was also experimentally verified.
机译:提出了一种新型的基于非连续导通模式(DCM)的基于单有源开关的零电压零电流开关(ZVZCS)抽头升压转换器的分析。 ZVZCS转换器包括一个由三个二极管和两个电容器组成的无损耗缓冲器,并且在占空比,负载电流和输入电压的宽工作范围内均表现出新颖的ZVZCS操作。有源开关的电压应力始终小于负载电压,并且在没有繁琐的电流或电压检测的情况下实现了软开关的导通和关断,而这也无法从也具有有源的准谐振转换器获得开关。提出了对DCM和拟议的转换器的组件应力的详细分析。对于450 W原型机的实验,在50kHz的开关频率下使用SiC JFET时,其最大效率为99.0%,并且即使在实验条件下的DCM条件下,也可以保证ZVZCS操作。此外,所提出的ZVZCS原理已应用于抽头降压-升压转换器的情况,并已通过实验验证。

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