Estimation-Correction Modeling and Chaos Control of Fractional-Order Memristor Load Buck-Boost Converter

被引:1
|
作者
Wang L. [1 ]
Wang C. [1 ]
Zhang H. [1 ]
Ma P. [1 ]
Zhang S. [1 ]
机构
[1] School of Electrical Engineering, Xinjiang University, Urumqi
来源
关键词
bursting oscillation; estimation-correction algorithm; fractional-order memristor Buck-Boost converter; hybrid control strategy;
D O I
10.23919/CSMS.2024.0002
中图分类号
学科分类号
摘要
A fractional-order memristor load Buck-Boost converter causes periodic system oscillation, electromagnetic noise, and other phenomena due to the frequent switching of the switch in actual operation, which is detrimental to the stable operation of the power electronic converter. It is of great significance to the study of the modeling method and chaos control strategy to suppress the nonlinear behavior of the Buck-Boost converter and expand the safe and stable operation range of the power system. An estimation-correction modeling method based on a fractional active voltage-controlled memristor load peak current Buck-Boost converter is proposed. The discrete numerical solution of the state variables in the continuous mode of the inductor current is derived. The bursting oscillation phenomenon when the system introduces external excitation is analyzed. Using bifurcation, Lyapunov exponent, and phase diagrams, a large number of numerical simulations are performed. The results show that the Buck-Boost converter is chaotic for certain selected parameters, which is the prerequisite for the introduction of the controller. Based on the idea of parameter perturbation and state association, a three-dimensional hybrid control strategy for a fractional memristor Buck-Boost converter is designed. The effectiveness of the control strategy is verified by simulations, and it is confirmed that the system is controlled in a stable periodic state when the external tunable parameter s, which represents the coupling strength between the state variables in the system, gradually decreases in [-0.4, 0]. Compared with integer-order controlled systems, the stable operating range of fractional-order controlled systems is much larger. © 2021 TUP.
引用
收藏
页码:67 / 81
页数:14
相关论文
共 50 条
  • [31] Buck-Boost Converter Modeling and Control based on its Role within a Microgrid
    Ichim-Burlacu, Catalin
    Rat, Cezara-Liliana
    Prostean, Octavian
    PROCEEDINGS 2024 IEEE 6TH GLOBAL POWER, ENERGY AND COMMUNICATION CONFERENCE, IEEE GPECOM 2024, 2024, : 57 - 62
  • [32] T-S Fuzzy Modeling and Control Based on BUCK-BOOST Converter
    Chen Jinjun
    Ji Zhicheng
    PROCEEDINGS OF THE 27TH CHINESE CONTROL CONFERENCE, VOL 2, 2008, : 312 - 316
  • [33] Implementation and control of a buck-boost converter connected to a constant power load in a DC microgrid
    Abdolahi, Mohsen
    Adabi, Jafar
    Mousazadeh Mousavi, Seyyed Yousef
    ELECTRICAL ENGINEERING, 2025, 107 (02) : 1483 - 1492
  • [34] Optimized fractional order control of a cascaded synchronous buck-boost converter for a wave-UC hybrid energy system
    Sahin, Erdinc
    Altas, Ismail Hakki
    ELECTRICAL ENGINEERING, 2018, 100 (02) : 653 - 665
  • [35] Modeling and Dynamic Analysis of Fractional-Order Buck Converter in Continuous Conduction Mode
    Dawei Ding
    Zongzhi Li
    Nian Wang
    Journal of Harbin Institute of Technology(New Series), 2019, 26 (04) : 58 - 68
  • [36] Comparative Analysis of Boost and Buck-Boost Converter for Power Factor Correction using Hysteresis Band Current Control
    Patra, Smita Rani
    Choudhury, Tanmoy Roy
    Nayak, Byamakesh
    PROCEEDINGS OF THE FIRST IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, INTELLIGENT CONTROL AND ENERGY SYSTEMS (ICPEICES 2016), 2016,
  • [37] Optimization Control Strategy for Light Load Efficiency of Four-Switch Buck-Boost Converter
    Gao, Siyuan
    Zhang, Fanghua
    Mei, Hongxin
    WORLD ELECTRIC VEHICLE JOURNAL, 2024, 15 (10):
  • [38] Modeling and Control of the Fractional Order Quadratic Boost Converter in PCCM
    Tan, Cheng
    Hua, Yi
    Yuan, Xin
    Ding, Zhu-shun
    INTERNATIONAL CONFERENCE ON MECHANICAL, ELECTRONIC AND INFORMATION TECHNOLOGY (ICMEIT 2018), 2018, : 304 - 310
  • [39] Improved fractional-order complementary sliding mode control for fractional-order Buck converter based on Riemann-Liouville derivative
    基于Riemann-Liouville分数阶模型的Buck变换器改进分数阶互补滑模控制
    Zeng, Qing-Shuang (zqshuang@hit.edu.cn), 1600, Northeast University (39):
  • [40] Dynamic Analysis and Fractional-Order Terminal Sliding Mode Control of a Fractional-Order Buck Converter Operating in Discontinuous Conduction Mode
    Jia, Zirui
    Liu, Ling
    Liu, Chongxin
    INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS, 2022, 32 (04):