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Analysis and Design of a Multioutput Converter Using Asymmetrical PWM Half-Bridge Flyback Converter Employing a Parallel–Series Transformer

机译:使用并联型变压器的非对称PWM半桥反激式转换器的多输出转换器的分析和设计

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摘要

This paper presents a multioutput converter using an asymmetrical pulsewidth modulation half-bridge flyback topology employing a parallel–series-connected transformer. Compared to conventional multioutput topologies, the proposed converter operates using a single-output controller without the need for additional control loops and devices. In order to solve the cross-regulation problem, the output stages of the proposed converter are stacked in series. In addition, the voltage regulation of the proposed multioutput converter is improved through the analysis of its resonant characteristics under load variations and minimizing the secondary conduction loss. The proposed multioutput converter shows excellent performance in terms of its output regulation from no-load to full-load conditions and good cross regulation under high output currents. The design methodology and performance of the proposed converter have been verified through experimentation employing a 110-W (3.3 V/16 A, 5 V/12 A) prototype converter.
机译:本文介绍了一种采用不对称脉宽调制半桥反激式拓扑结构的多输出转换器,该拓扑结构采用了并联串联的变压器。与传统的多输出拓扑相比,建议的转换器使用单输出控制器运行,而无需其他控制环路和设备。为了解决交叉调节问题,提出的转换器的输出级串联堆叠。此外,通过分析负载变化下的谐振特性并最大程度地降低次级传导损耗,可以改善所提出的多输出转换器的电压调节性能。提出的多输出转换器在从空载到满载的输出调节方面表现出出色的性能,并且在高输出电流下具有良好的交叉调节性能。通过使用110 W(3.3 V / 16 A,5 V / 12 A)原型转换器进行实验,已验证了所建议转换器的设计方法和性能。

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