A double closed loop control algorithm based on current mode in full bridge circuit

In order to improve the problems of large output current and voltage ripples and slow system response when the full-bridge circuit is working. This paper proposes a double closed-loop control algorithm based on current mode. Use fuzzy controller to optimize the parameters of voltage outer loop PID c...

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Published inJournal of physics. Conference series Vol. 1983; no. 1; pp. 12083 - 12088
Main Authors Xu, Chengbo, Chen, Jing, Li, Zhihua, Xiao, Chun
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.07.2021
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ISSN1742-6588
1742-6596
1742-6596
DOI10.1088/1742-6596/1983/1/012083

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Abstract In order to improve the problems of large output current and voltage ripples and slow system response when the full-bridge circuit is working. This paper proposes a double closed-loop control algorithm based on current mode. Use fuzzy controller to optimize the parameters of voltage outer loop PID controller. The genetic controller is used to optimize the parameters of the current inner loop PID controller. After the dual closed-loop structure of the current control mode is optimized for the traditional PID controller, the overshoot is reduced, the system response speed is accelerated and the current ripple and voltage ripple are also greatly reduced. The simulation verifies the effectiveness of the designed double closed-loop control algorithm.
AbstractList In order to improve the problems of large output current and voltage ripples and slow system response when the full-bridge circuit is working. This paper proposes a double closed-loop control algorithm based on current mode. Use fuzzy controller to optimize the parameters of voltage outer loop PID controller. The genetic controller is used to optimize the parameters of the current inner loop PID controller. After the dual closed-loop structure of the current control mode is optimized for the traditional PID controller, the overshoot is reduced, the system response speed is accelerated and the current ripple and voltage ripple are also greatly reduced. The simulation verifies the effectiveness of the designed double closed-loop control algorithm.
Author Li, Zhihua
Xu, Chengbo
Chen, Jing
Xiao, Chun
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10.1109/TPEL.2009.2012498
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StartPage 12083
SubjectTerms Algorithms
Circuits
Closed loops
Control algorithms
Control theory
Controllers
Electric potential
Fuzzy control
Parameters
Proportional integral derivative
Ripples
Voltage
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