Stability analysis of a phase-shifted full-bridge circuit for electric vehicles based on adaptive neural fuzzy PID control

Author:

Liu Yan,Huang Yan,Zhang He,Huang Qiang

Abstract

AbstractIn the paper, adaptive neural fuzzy (ANF) PID control is applied on the stability analysis of phase-shifted full-bridge (PSFB) zero-voltage switch (ZVS) circuit, which is used in battery chargers of electric vehicles. At first, the small-signal mathematical model of the circuit is constructed. Then, by fuzzing the parameters of PID, a closed-loop system of the small-signal mathematical model is established. Further, after training samples collected from the fuzzy PID system by adaptive neural algorithm, an ANF PID controller is utilized to build a closed-loop system. Finally, the characteristics of stability, overshoot and response speed of the mathematical model and circuit model systems are analyzed. According to the simulation results of PSFB ZVS circuit, the three control strategies have certain optimizations in overshoot and adjustment time. Among them, the optimization effect of PID control in closed-loop system is the weakest. From the results of small-signal model and circuit model, the ANF PID system has highest optimization. Experiments demonstrate that the ANF PID system gives satisfactory control performance and meets the expectation of optimization design.

Funder

National Natural Science Foundation of China

Open Foundation of State Key Laboratory of Compressor Technology

National Key Research and Development Project

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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1. A speed coordination control method based on D-S evidence synthesis theory;Transactions of the Institute of Measurement and Control;2024-07-27

2. Research on the control strategy of bidirectional DC-DC converter for battery formation and grading system;2023 5th International Conference on Electronic Engineering and Informatics (EEI);2023-06-30

3. Design and Development of Solar Powered Phase Shifted Full Bridge Converter for EV Charger;2023 International Conference on Communication System, Computing and IT Applications (CSCITA);2023-03-31

4. Two-stage isolated AC/DC converter and its compound control strategy;PLOS ONE;2022-09-22

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