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Fuzzy frequency‐selecting sliding mode controller for LLC resonant converter
Author(s) -
Tian Zhongli,
Fang Yu,
Guo Na,
Zhou Xingcheng,
Cao Songyin
Publication year - 2019
Publication title -
the journal of engineering
Language(s) - English
Resource type - Journals
ISSN - 2051-3305
DOI - 10.1049/joe.2018.9384
Subject(s) - control theory (sociology) , controller (irrigation) , ripple , fuzzy logic , automatic frequency control , power (physics) , sliding mode control , switching frequency , engineering , computer science , voltage , physics , electrical engineering , control (management) , nonlinear system , agronomy , biology , artificial intelligence , quantum mechanics
A fuzzy frequency‐selecting sliding mode controller for LLC resonant converter is presented here. Based on the fixed high and low switching frequency of sliding mode controller in the LLC resonant converter, the fuzzy controller is used to generate the corresponding high and low switching frequency according to different power levels. The high or low switching frequency is then selected by the frequency switching signal generated by the sliding mode controller, thus the fuzzy frequency‐selecting sliding mode controller is realised. The fuzzy control rules here come from the simulation and artificial summary of the application circuit and load characteristics, and the high and low switching frequencies varied with the load are generated by the fuzzy frequency‐selecting sliding mode controller, so as to realise the stable control of the output power of the LLC resonant converter. The fuzzy frequency‐selecting sliding mode controller for LLC resonant converter is applied to a 240 W all‐digital adaptive dimming power supply prototype, which can effectively reduce the steady‐state error of the output power of the LLC resonant converter, and has a consistent low ripple characteristic when the load changes.

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