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A Design Method for LCC Resonant Converter over Wide Load Range with Wide-range Input and Output

机译:具有宽范围输入和输出的LCC谐振变换器LCC谐振变换器的设计方法

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Based on the First Harmonic Approximation (FHA) model of LCC resonant converter (CCM mode PFM control), this paper analyses and elaborates the mutual restriction relationship between LCC parameters. Subsequently, an intuitive design method is proposed to realize the gain capability of LCC resonant converter over wide load range with wide-range input and output. And a light load optimization using double inductors is presented to reduce the high switching frequency and reactive current under the light-load mode. Key parameters are given according to the specific requirements in this paper. Finally, the gain capability and the effect of the light load optimization are validated by the experimental results of a prototype with input 483-591V, output 40-150kV, output 1A(max) and output 80kW(max). The gain requirement can be satisfied remarkably, the frequency range of the system is optimized from 59.7-130.3kHz to 52.2-94.1kHz, and the resonant current is greatly reduced under the light-load mode.
机译:基于LCC谐振转换器(CCM模式PFM控制)的第一谐波近似(FHA)模型,本文分析并详细阐述了LCC参数之间的互限制关系。随后,提出了一种直观的设计方法,以实现LCC谐振变换器在宽负载范围内的增益能力,具有宽范围的输入和输出。提出了使用双电感器的轻负载优化,以降低光负荷模式下的高开关频率和无功电流。根据本文的具体要求给出关键参数。最后,通过输入483-591V的原型的实验结果,输出40-150kV,输出1a(最大值)和输出80kW(最大值),通过实验结果验证了增益能力和光负荷优化的效果。可以非常满意增益要求,系统的频率范围从59.7-130.3kHz优化到52.2-94.1kHz,并且在轻负载模式下谐振电流大大降低。

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