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Analysis and Design of the LLC Resonant Converter With Variable Inductor Control Based on Time-Domain Analysis

机译:基于时域分析的可变电感控制LLC谐振转换器的分析与设计

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摘要

The LLC resonant converters commonly adopt frequency modulation (FM) or combination of FM with phase-shift modulation to regulate its output voltage. However, in these control schemes, a variable switching frequency range is required, which makes the magnetic components design complicated. Therefore, in this article, magnetic control (or variable inductor control) is adopted to make the converter operating at constant switching frequency and constant duty cycle. The fundamental harmonic analysis is commonly used because of its characteristic of simplicity. However, the accuracy of this method is reduced and considerable errors occur when the switching frequency or output power changes. Therefore, an optimal design methodology based on time-domain analysis of the LLC resonant converter with magnetic control is proposed in this article. The proposed methodology can assure that the converter will operate in PO or OPO modes within the whole operating range, and zero voltage switching operation for primary switches and zero current switching operation for secondary rectifier will be guaranteed. In addition, by limiting the resonant tank root-mean-square current, the system efficiency is improved. A 200-W experimental prototype is built and the effectiveness of the proposed optimal design methodology is verified.
机译:LLC谐振转换器通常采用频率调制(FM)或FM与相移调制的组合,以调节其输出电压。然而,在这些控制方案中,需要一种可变开关频率范围,这使得磁性元件设计复杂。因此,在本文中,采用磁控制(或可变电感控制)使转换器以恒定的开关频率和恒定占空比运行。由于其特征的简单性,通常使用基本谐波分析。然而,减少了该方法的准确性,并且在开关频率或输出功率变化时发生相当大的错误。因此,本文提出了一种基于LLC谐振转换器的时域分析的最佳设计方法。所提出的方法可以确保转换器将在整个操作范围内的PO或OPO模式运行,并且将保证为初级交换机和零电流切换操作的零电压切换操作将得到保证。另外,通过限制谐振箱根均方电流,提高了系统效率。建立了200-W实验原型,验证了所提出的最佳设计方法的有效性。

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