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Design of a Novel APWM Half-Bridge DC-DC Resonant Converter with Load-Independent Soft-Switching and Reduced Circulating Current

机译:具有负载无关的软切换和减小循环电流的新型APWM半桥DC-DC谐振转换器设计

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This paper presents a novel Asymmetrical-Pulse-Width-Modulated(APWM)half-bridge resonant converter with one additional active switching device at the secondary side of the transformer. The proposed converter features load-independent Zero - Voltage-Switching(ZVS)of both of the primary side switches with minimal magnetizing current. Empirical formulae are derived to design the resonant network and the high-frequency transformer systematically. The circulating current is minimized not only by operating the converter exactly at the resonant frequency, but also by reducing the magnetizing current. Moreover, the additional secondary-side switching device(which is a low-voltage and high-current rated MOSFET)achieves zero current turn-off at all load conditions. Thus the efficiency of the overall converter is significantly improved for wide load range. Simulation and experimental results are presented to validate the analysis and to prove the significance of the additional switching device at the secondary side of the transformer.
机译:本文介绍了一种新的非对称脉冲宽度调制(APWM)半桥谐振转换器,其辅助变压器的次级侧具有一个附加有源开关装置。所提出的转换器具有具有最小磁化电流的初级侧开关的负载无关的零电压切换(ZVS)。衍生经验公式以系统地设计谐振网络和高频变压器。不仅通过精确地以谐振频率操作转换器,而且还通过减小磁化电流来最小化循环电流。此外,附加的辅助侧开关装置(其是低电压和高电流额定MOSFET)在所有负载条件下实现零电流关断。因此,对于宽负载范围,总转换器的效率显着提高。提出了仿真和实验结果以验证分析并证明额外的开关装置在变压器的次级侧的意义。

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