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Extended Analysis of the Asymmetrical Half-Bridge Flyback Converter

机译:非对称半桥反激转换器的扩展分析

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摘要

Isolated, zero-voltage-switching dc-dc converter topologies represent attractive solutions in the continuous run toward higher switching frequencies, allowing more compact power supplies. Among them, the asymmetrical half-bridge flyback converter represents an interesting option, featuring simple duty-cycle control at constant switching frequency, as opposed to the popular LLC converter. The majority of papers dealing with this topology consider an approximated voltage gain similar to that of an isolated buck converter operating in continuous conduction mode, i.e., proportional to the duty cycle and, practically, load independent. On the contrary, the true voltage gain is nonmonotonic at high duty-cycle values. Anytime the converter is designed for a resonant operation, as is advisable to eliminate any reverse recovery problem of the rectifier diode, the voltage gain not only increases, but also becomes a function of the switching frequency. This article investigates the converter's voltage gain in detail, deriving a theoretical framework capable of capturing its real behavior and dependencies. The proposed analytical model has been verified through simulations as well as experimental measurements taken on a 160-W prototype working at 400 kHz.
机译:隔离的零电压切换DC-DC转换器拓扑结构代表持续运行较高的开关频率的有吸引力的解决方案,允许更紧凑的电源。其中,非对称半桥反激转换器代表了一个有趣的选择,具有在恒定开关频率下的简单占空比控制,而不是流行的LLC转换器。处理该拓扑的大多数纸张考虑了与在连续导通模式下操作的隔离降压转换器类似的近似电压增益,即,与占空比成比例,实际上是独立的负载。相反,真正的电压增益是高占空比值的非单调。随时转换器设计用于谐振操作,建议消除整流二极管的任何反向恢复问题,电压增益不仅增加,而且变为开关频率的函数。本文详细调查了转换器的电压增益,导出了能够捕获其实际行为和依赖性的理论框架。通过仿真验证了所提出的分析模型以及在400 kHz工作的160 W原型上采取的实验测量。

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