基于扩展描述函数的LLC谐振变换器建模方法比较

Goutam Ghosh, Soumitro Vyapari, V. R
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引用次数: 0

摘要

谐振变换器以其功率密度高、工作效率高的特点,已经超越了传统的PWM DC-DC变换器。随着谐振变换器的快速发展,精确的建模和控制是必不可少的。在谐振变换器中,常规的平均建模方法是无效的,因为在PWM变换器中不能忽略开关频率分量。基于基谐波近似(FHA)的谐振变换器最适合的建模方法是扩展描述函数(EDF)方法。本文通过适当的实验结果,对有限责任责任谐振变换器(LLC- rc)的几种建模方法进行了比较验证。模拟结果也揭示了右半平面(RHP)零的潜在存在。并以1kW数控lc - rc实验室样机为例,阐述了模型的有效性和局限性。此外,还讨论了适合该模型的不同控制器的比较,并得到了相关实验结果的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Modeling Approaches for LLC Resonant Converter Based on Extended Describing Function
Resonant Converter has surpassed traditional PWM DC-DC converters for their power dense and efficient operation. Along with the rapid growth of the resonant converters, accurate modeling and control is essential. In resonant converters, the conventional averaged modeling method is ineffective because the switching frequency components cannot be disregarded, as in PWM converters. The most suited modeling approach used in resonant converters based on Fundamental Harmonic Approximation (FHA), is the Extended Describing Function (EDF) method. In this paper, comparison of those modeling approaches for LLC resonant converter (LLC-RC) is validated through suitable experimental results. Results from simulations have also revealed the potential existence of Right Half Plane (RHP) zero. The validity and the limitation of the models are also elaborated with a 1kW digitally controlled LLC-RC laboratory prototype. Furthermore, a comparison of different controllers that are appropriate for the model is discussed and supported by relevant experimental results.
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