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Simple control method for three‐phase pulse‐width modulation rectifier of switching power supply under unbalanced and distorted supply voltages
Author(s) -
Luo An,
Jin Guobin,
Xiao Huagen,
Xiong Qiaopo,
Wang Yichao,
Xie Ning
Publication year - 2014
Publication title -
iet power electronics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.637
H-Index - 77
eISSN - 1755-4543
pISSN - 1755-4535
DOI - 10.1049/iet-pel.2013.0584
Subject(s) - rectifier (neural networks) , pulse width modulation , switched mode power supply , three phase , voltage , power (physics) , control theory (sociology) , pwm rectifier , phase (matter) , simple (philosophy) , pulse (music) , electronic engineering , materials science , control (management) , electrical engineering , engineering , computer science , physics , stochastic neural network , machine learning , artificial intelligence , recurrent neural network , artificial neural network , philosophy , epistemology , quantum mechanics
This study presents an improved dead‐beat control method for three‐phase pulse‐width modulation rectifier of the switching power supply under source‐voltage harmonics and unbalance disturbances. First, a reference currents extraction method and an active negative sequence currents injection method for the dead‐beat control are presented to suppress the input harmonic currents and the second harmonic voltage of the DC‐link voltage in the rectifier. Then, active disturbance rejection control is presented to substitute for the PI control, which can improve the transient response and strengthen the antidisturbance ability of the rectifier. Finally, to improve the efficiency of the power supply, two auxiliary inductors are introduced to realise soft switching of the DC/DC converter, which is an idea of taking the rectifier and the DC/DC converter as a whole. The feasibility and superior performances of the presented control methods and topology have been validated by the experimental results.

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