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Optimal design method for LLC resonant converter with wide range output voltage

机译:大范围输出电压的LLC谐振变换器的优化设计方法

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LLC resonant converter has been used widely in DC-DC converters for constant output voltage with high efficiency. However, most of the design methods based on fundamental harmonic approximation (FHA) can't be used for the design of charging converter of Li-Ion batteries as the output voltage of Li-Ion batteries charger is wide. In this paper, an optimal design method for LLC resonant converter has been developed. The objective of this optimal design method is maximizing the magnetizing inductance. The relationship between the operation range and circuit parameters has been revealed based on the frequency response of the converter. Maximum conversion efficiency is achieved under the normal condition by using the maximum magnetizing inductance. A numerical method is developed based on the LLC converter's steady state equations to eliminate the limitation that the FHA method fails to describe voltage gain characteristic more precisely. A 3kW prototype LLC converter with output voltage ranging from 50V to 100V is built according to the proposed optimization method. Simulation results show that the proposed converter can achieve the higher efficiency than the conventional method. Furthermore, the full load efficiency of a 3kW prototype is about 94.5%.
机译:LLC谐振转换器已广泛用于DC-DC转换器中,以提供恒定的高输出电压。然而,由于锂离子电池充电器的输出电压较宽,大多数基于基波谐波近似(FHA)的设计方法不能用于锂离子电池的充电转换器的设计。本文提出了一种LLC谐振变换器的优化设计方法。这种最佳设计方法的目的是使磁化电感最大化。已经基于转换器的频率响应揭示了工作范围和电路参数之间的关系。在正常条件下,使用最大的励磁电感可实现最大的转换效率。基于LLC转换器的稳态方程,开发了一种数值方法,以消除FHA方法无法更精确地描述电压增益特性的局限性。根据提出的优化方法,构建了一个输出功率范围为50V至100V的3kW原型LLC转换器。仿真结果表明,所提出的变换器比常规方法具有更高的效率。此外,一个3kW原型的满载效率约为94.5%。

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