A Modeling and Analysis Method for CCM Fractional Order Buck-Boost Converter by Using R-L Fractional Definition

被引:19
|
作者
Xie, Lingling [1 ]
Liu, Zhipei [1 ]
Zhang, Bo [2 ]
机构
[1] Guangxi Univ, Sch Elect Engn, Nanning, Peoples R China
[2] South China Univ Technol, Sch Elect Power, Guangzhou, Peoples R China
基金
中国国家自然科学基金;
关键词
Fractional order buck-boost converter; Modeling; R-L fractional definition; Stability; CONDUCTION; CAPACITOR;
D O I
10.1007/s42835-020-00426-5
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Fractional definition is important for the application of fractional-order theory in electrical engineering, and fractional-order theory directly affects the accuracy of the model and the operating characteristics of the power converter. Most researchers used the fractional definition of Caputo to study fractional order power converter. However, it is found that the model based on Caputo fractional definition is inconsistent with the actual situation. A novel modeling and analysis method for the fractional buck-boost converter is proposed in this paper. Firstly, the fractional converter model operating in continuous conduction mode (CCM) is established and the DC analysis is completed by using Riemann-Liouville (R-L) fractional definition. The R-L fractional definition is nearly 1.1% more accurate than the Caputo definition in the DC analysis. Secondly, the influence of the capacitor and inductor orders on the converter is performed. The results show that the capacitor and inductor orders have great effect on the DC components of the state variable and the steady-state characteristics of the fractional order buck-boost converter. Finally, simulation and experiment results are provided that the validity of theoretical analysis.
引用
收藏
页码:1651 / 1661
页数:11
相关论文
共 50 条
  • [21] Modeling and analysis of fractional order Buck converter using Caputo-Fabrizio derivative
    Yang, Ruocen
    Liao, Xiaozhong
    Lin, Da
    Dong, Lei
    ENERGY REPORTS, 2020, 6 : 440 - 445
  • [22] Modeling and Analysis of the Fractional Order Buck Converter in DCM Operation by using Fractional Calculus and the Circuit-Averaging Technique
    Wang, Faqiang
    Ma, Xikui
    JOURNAL OF POWER ELECTRONICS, 2013, 13 (06) : 1008 - 1015
  • [23] Modeling, Analysis and Implementation of an Improved Interleaved Buck-Boost Converter
    Rana, Niraj
    Banerjee, Subrata
    Giri, Santu Kumar
    Trivedi, Ashutosh
    Williamson, Sheldon S.
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2021, 68 (07) : 2588 - 2592
  • [24] An Analytical Approach for Obtaining the Transient Solution of the Fractional-Order Buck Converter in CCM
    Li, Xiaoxiao
    Chen, Yanfeng
    Chen, Xi
    Zhang, Bo
    Qiu, Dongyuan
    IECON 2017 - 43RD ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY, 2017, : 6859 - 6863
  • [25] Application of TIS Method in Modeling Switched Inductor Buck-Boost Converter
    Li, Kewei
    Yao, Jia
    Abramovitz, Alexander
    2020 IEEE 9TH INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE (IPEMC2020-ECCE ASIA), 2020, : 1361 - 1366
  • [26] 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
  • [27] Complex Dynamics and Hard Limiter Control of a Fractional-Order Buck-Boost System
    Yan, Bo
    Wang, Shaojie
    He, Shaobo
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2021, 2021
  • [28] Modeling a photovoltaic emulator using four methods and buck-boost converter
    Jenkal, S.
    Kourchi, M.
    Rachdy, A.
    Oussalem, O.
    Ajaamoum, M.
    Oubella, M.
    Engineering Letters, 2021, 29 (02): : 408 - 415
  • [29] Small-signal Modeling and Analysis of KY Buck-Boost Converter
    Wang, Faqiang
    Li, Jing
    Ma, Xikui
    ELECTRIC POWER COMPONENTS AND SYSTEMS, 2016, 44 (07) : 783 - 793
  • [30] MODELING,SIMULATION AND ANALISIS OF NONINVERTING BUCK-BOOST CONVERTER USING PSIM
    Viswanatha, V.
    Reddy, Venkata Siva R.
    2016 INTERNATIONAL CONFERENCE ON CIRCUITS, CONTROLS, COMMUNICATIONS AND COMPUTING (I4C), 2016,