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State-space modelling of LLC resonant half-bridge DC–DC converter

机译:LLC谐振半桥DC-DC转换器的状态空间建模

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Recently, LLC resonant converters have attracted significant research from industry and academia for AC-DC and DC-DC power conversion with high efficiency and remarkable power density. They are appealing candidates for numerous vehicular and renewable energy applications including battery chargers for electric vehicles and drivers of LED lights. This study introduces a mathematical model of LLC resonant half-bridge DC-DC converter, which captures its steady-state behaviours for both continuous conduction mode and discontinuous conduction mode operations. One major advantage of the proposed model lies in accurate estimation of the switching frequency of power switches under a wide range of parametric variations. This benefit is, however, not offered by the prevailing method based on the first harmonic approximation (FHA). The analytical derivations of the system's state-space model, as well as equations for calculating the switching frequency by FHA, are discussed in details. For illustration, a 340 W digitally controlled LLC resonant converter is targeted in this study. The simulation analyses of current and voltage waveforms for light and heavy load conditions are presented. Moreover, the experimental results, along with the comparison of switching frequency estimation for both methods, are demonstrated and discussed, which confirms the validity and effectiveness of the proposed model.
机译:最近,LLC谐振转换器吸引了工业和学术界的显着研究,具有高效率和显着的功率密度。他们对众多车辆和可再生能源应用有吸引人的候选人,包括电动汽车和LED灯的驱动器的电池充电器。该研究介绍了LLC谐振半桥DC-DC转换器的数学模型,其捕获其稳态行为,用于连续导通模式和不连续的传导模式操作。所提出的模型的一个主要优点在于在各种参数变化下的功率开关的切换频率的精确估计。然而,这一益处不是由基于第一个谐波近似(FHA)的主要方法提供。详细讨论了系统状态空间模型的分析推导以及用于计算FHA的开关频率的方程。用于说明,340 W数字控制的LLC谐振转换器针对本研究。提出了光线和重载条件的电流和电压波形的模拟分析。此外,实验结果以及两种方法的开关频率估计的比较,并讨论了,这证实了所提出的模型的有效性和有效性。

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