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Extended Harmonics Based Phase Tracking for Synchronous Rectification in CLLC Converters

机译:基于扩展的基于谐波的CLLC转换器同步整流的相位跟踪

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Synchronous rectification (SR) is one of the well-known methods to reduce the conduction losses by replacing the power diodes. The control of SR requires the phase information of the device current. In this paper, a novel extended harmonics approximation modeling approach is introduced for CLLC resonant converters to estimate the phase of its secondary side current accurately. Conventionally, the first harmonic approximation (FHA) is used to model any resonant converter; however, FHA works more accurately near the resonant frequency operation. But in case of a set of unmatched LC tank parameters in the primary and secondary side of a CLLC converter, there is no uniquely defined resonant frequency, which reduces the accuracy of the FHA model. Unlike FHA-based approach, our proposed modeling considers the effects of other odd order harmonics present in the square wave voltage waveform towards determining the zero-crossing instant or phase information of the resonant currents. The proposed concept is verified through experimental results obtained at 3.3-kW load condition, and the converter efficiency is improved by 1.8% with the proposed phase tracking technique, compared to FHA modeling approach.
机译:同步整流(SR)是通过更换电源二极管来降低导通损耗的众所周知的方法之一。 SR的控制需要设备电流的相位信息。在本文中,引入了一种新的扩展谐波近似建模方法,用于CLLC谐振转换器精确地估计其次级侧电流的相位。传统上,第一个谐波近似(FHA)用于模拟任何谐振转换器;但是,FHA在谐振频率操作附近更准确地工作。但是,如果在CLLC转换器的主要和次级侧的一组无与伦比的LC罐参数的情况下,没有唯一定义的谐振频率,这降低了FHA模型的准确性。与基于FHA的方法不同,我们所提出的建模认为存在于方波电压波形中存在的其他奇数谐波的效果朝向确定谐振电流的过零时间或相位信息。通过在3.3千瓦的负载条件下获得的实验结果验证所提出的概念,与FHA建模方法相比,通过所提出的相位跟踪技术提高了转换器效率的1.8%。

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