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Comprehensive analysis and design of LLC resonant converter with magnetic control

机译:磁控控制LLC谐振变换器的综合分析与设计

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摘要

Conventionally, LLC resonant converter adopts frequency control (FC) or combine FC with phase shift control (PSC) to regulate the output voltage. However, for both control strategies, a variable switching frequency operation range is required, which makes the magnetic component and driver circuit design complicated. In this paper, the magnetic control (MC) or variable inductor control is adopted for the LLC resonant converter. Thanks to MC, constant switching frequency and duty cycle can be implemented for the primary switches. A comprehensive analysis of the magnetically controlled LLC resonant converter is presented, which includes the operation principle, voltage gain, and soft switching operation. Meanwhile, a design methodology for LLC resonant converter with MC is proposed, especially the design considerations for the variable inductor are discussed. By adopting the proposed design methodology, the zero voltage switching (ZVS) operation for the primary switches and the zero current switching (ZCS) operation for the secondary rectifier can be achieved. Finally, a 200 W experimental setup is built to validate the theoretical analysis.
机译:传统上,LLC谐振转换器采用频率控制(FC)或将FC与相移控制(PSC)相结合以调节输出电压。然而,对于两个控制策略,需要一种可变的开关频率操作范围,这使得磁性分量和驱动器电路设计复杂。在本文中,采用LLC谐振转换器采用磁控器(MC)或可变电感控制。由于MC,可以为主开关实现恒定的开关频率和占空比。提出了对磁控LLC谐振转换器的综合分析,包括操作原理,电压增益和软切换操作。同时,提出了一种具有MC的LLC谐振转换器的设计方法,特别是讨论了可变电感器的设计考虑因素。通过采用所提出的设计方法,可以实现用于初级交换机的零电压切换(ZVS)操作和用于二级整流器的零电流切换(ZCS)操作。最后,建立了200 W实验设置以验证理论分析。

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