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A Variable Duty Cycle Soft Startup Strategy for LLC Series Resonant Converter Based on Optimal Current-Limiting Curve

机译:基于最优限流曲线的LLC系列谐振变换器可变占空比软启动策略

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摘要

For the LLC series resonant converter (LLC-SRC), the resonant current inrush during the startup is a threat to the safe operation of the main switches, and frequency-decreasing startup method is usually adopted. The very high initial start-up frequency can suppress this inrush effectively, but increases the output current demand of drive ICs. In this paper, a variable duty cycle soft startup strategy based on optimal current-limiting curve is presented, which can realize the suppression of the resonant current inrush under low startup frequency. Due to the nonlinearity of the LLC-SRC, the mode transition conditions are illustrated and a generalized numerical model of the LLC-SRC is established, providing a highly accurate prediction on resonant variables and output during the startup process. Based on the numerical model, the relationship between the startup current, initial startup frequency, and the duty cycle is revealed to quantify the startup process and achieve optimal initial startup parameters. A numerical algorithm is presented to obtain the optimal current-limiting curve during the startup. Two variable duty cycle startup methods are applied to verify the effectiveness of the proposed strategy, namely the PWM startup method and the phase-shift startup method. The experimental results are presented to verify the proposed soft startup strategy.
机译:对于LLC系列谐振变换器(LLC-SRC),启动过程中涌入的谐振电流会威胁到主开关的安全运行,通常采用降低频率的启动方法。很高的初始启动频率可以有效地抑制这种浪涌,但会增加驱动IC的输出电流需求。提出了一种基于最优限流曲线的可变占空比软启动策略,可以在低启动频率下实现对谐振电流涌入的抑制。由于LLC-SRC的非线性,对模式转换条件进行了说明,并建立了LLC-SRC的通用数值模型,从而在启动过程中提供了有关谐振变量和输出的高精度预测。基于数值模型,揭示了启动电流,初始启动频率和占空比之间的关系,以量化启动过程并获得最佳的初始启动参数。提出了一种数值算法,以在启动过程中获得最佳的限流曲线。两种可变占空比启动方法被应用于验证所提出策略的有效性,即PWM启动方法和相移启动方法。给出实验结果以验证所提出的软启动策略。

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