An AEFA-Based Optimum Design of Fuzzy PID Controller for Attitude Control Flywheel with BLDC Motor

被引:12
|
作者
Zhang, Zhizhou [1 ]
Li, Yang [1 ]
机构
[1] Sun Yat Sen Univ, Sch Aeronaut & Astronaut, Guangzhou 510275, Peoples R China
基金
中国国家自然科学基金;
关键词
small satellite; BLDC motor; attitude control flywheel; fuzzy PID controller; optimization; SPEED CONTROLLER; SYSTEM; ALGORITHM;
D O I
10.3390/aerospace9120789
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
A new method for optimizing the fuzzy PID controller, based on an artificial electric field algorithm (AEFA), is proposed in this paper, aiming at improving the stability indicator of the Brushless DC (BLDC) motor for the small satellite attitude control flywheel. The BLDC motor is the basic part of the small satellite attitude control flywheel. In order to accurately control the attitude of the small satellite, a good motor control system is very important. Firstly, the mathematical model of the BLDC motor is established and the BLDC motor speed control system using traditional PID control is designed. Secondly, considering that the small satellite speed control system is a nonlinear system, a fuzzy PID control is designed to solve the shortcomings of the fixed parameters of the traditional PID control. Finally, we find that the control accuracy of the fuzzy PID control will change with the range of the input. Therefore, we introduce the AEFA to optimize fuzzy PID to achieve high-precision attitude control of small satellites. By simulating the BLDC motor system, the proposed fuzzy PID controller based on AEFA is compared with the traditional PID controller and the fuzzy PID controller. Results from different controllers show that the proposed control method could effectively reduce steady state error. In addition, the proposed fuzzy PID-AEFA controller has the better anti-jamming capability.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] FUZZY PID CONTROLLER FOR NANO-SATELLITE ATTITUDE CONTROL
    Mahdi, Mohammed Chessab
    JOURNAL OF SCIENCE AND ARTS, 2016, (04): : 407 - 416
  • [32] Voltage Angle Control for a BLDC Motor and Controller Gain Design
    Kim Y.-T.
    Gu B.-G.
    Lim J.-K.
    Kim R.-Y.
    Transactions of the Korean Institute of Electrical Engineers, 2024, 73 (05): : 784 - 792
  • [33] A PSO-Based Optimum Design of PID Controller for a Linear Brushless DC Motor
    Nasri, Mehdi
    Nezamabadi-Pour, Hossein
    Maghfoori, Malihe
    PROCEEDINGS OF WORLD ACADEMY OF SCIENCE, ENGINEERING AND TECHNOLOGY, VOL 20, 2007, 20 : 211 - +
  • [34] The controller design for dc motor speed system based on improved fuzzy PID
    Ma Bin
    Meng Qingbin
    Yu Feng
    Han Zhonghua
    Wang Changtao
    INTELLIGENT SYSTEM AND APPLIED MATERIAL, PTS 1 AND 2, 2012, 466-467 : 1246 - 1250
  • [35] Design of fuzzy PID stepping motor controller based on particle swarm optimization
    Li, Min
    Zhang, Yang
    You, Dazhang
    2020 3RD WORLD CONFERENCE ON MECHANICAL ENGINEERING AND INTELLIGENT MANUFACTURING (WCMEIM 2020), 2020, : 449 - 453
  • [36] The Design of the DC Servo Motor Controller Based on Fuzzy Immune PID Algorithm
    Sun, Haoshui
    Wang, Xiaoguang
    Lin, Qinying
    Wang, Xiaoping
    Su, Saiyu
    PROCEEDINGS OF THE 36TH CHINESE CONTROL CONFERENCE (CCC 2017), 2017, : 4724 - 4729
  • [37] An Optimal Fuzzy PID Controller Design Based on Conventional PID Control and Nonlinear Factors
    Chao, Chun-Tang
    Sutarna, Nana
    Chiou, Juing-Shian
    Wang, Chi-Jo
    APPLIED SCIENCES-BASEL, 2019, 9 (06):
  • [38] Brushless DC Motor Speed Control System Based on Fuzzy PID Controller
    Cheng, Guoqiang
    NETWORK COMPUTING AND INFORMATION SECURITY, 2012, 345 : 287 - 294
  • [39] Application of optimal fuzzy PID controller design: PI control for nonlinear induction motor
    Xu, Jingwei
    Feng, Xin
    Mirafzal, B.
    Demerdash, Nabeel A.
    WCICA 2006: SIXTH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION, VOLS 1-12, CONFERENCE PROCEEDINGS, 2006, : 3953 - +
  • [40] PID Controller Based Intelligent Fuzzy Control of a SPM System Design
    Lin, Jium-Ming
    Chang, Po-Kuang
    NEW ASPECTS OF SYSTEMS THEORY AND SCIENTIFIC COMPUTATION, 2010, : 258 - +