Light-load performance optimization for LLC resonant converter

Author:

Yao Xuliang,Han Xiao,Liao Yuefeng,Wang Jingfang

Abstract

Purpose This study aims to solve the problem that under light-load conditions, the output voltage regulation capability is lost due to the fact that the voltage gain of the LLC resonant converter does not decrease with the increase of the switching frequency. Design/methodology/approach In this paper, the impedance model considering the parasitic parameters of the primary and secondary sides is calculated under light-load conditions, the limitations of the previous method are explained and a new circuit improvement is proposed. Findings In this paper, an improved circuit is proposed, and the impedance Bode plot is used to verify that the circuit can effectively improve the voltage gain problem under light-load conditions. Finally, the experimental results verify the effectiveness of the proposed circuit through comparison with traditional solutions and circuits. Originality/value In this paper, the impedance model considering the parasitic parameters of the primary and secondary sides is calculated, the limitations of the previous method are explained and a new circuit improvement is proposed. When compared with the previous method, the proposed circuit improvement can suppress the voltage gain increase that occurs when the switching frequency increases to a certain level.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering

Reference21 articles.

1. Dual-loop controller for LLCs using an average equivalent model;IEEE Transactions on Power Electronics,2018

2. An LLC resonant DC–DC converter for wide output voltage range battery charging applications;IEEE Transactions on Power Electronics,2013

3. Light load efficiency improvement for high frequency LLC converters with simplified optimal trajectory control(SOTC),2011

4. Digital implementation of light-load efficiency improvement for high-frequency LLC converters with simplified optimal trajectory control;IEEE Journal of Emerging and Selected Topics in Power Electronics,2018

5. Optimal trajectory control of LLC resonant converters for soft start-up;IEEE Trans. Power Electron,2014

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