Mechanical resonance suppression method based on active disturbance rejection control in two-mass servo system

被引:0
作者
Tae-Gyeom Woo
Bum-Jin Kim
Young-Doo Yoon
机构
[1] Hanyang University,Department of Automotive Engineering (Automotive
[2] Hanyang University,Computer Convergence)
来源
Journal of Power Electronics | 2022年 / 22卷
关键词
Active disturbance rejection control; Disturbance suppression; Resonance; Two-mass system;
D O I
暂无
中图分类号
学科分类号
摘要
A method for suppressing the mechanical resonance of servo drives in a two-mass system coupled with a flexible shaft is proposed. Active disturbance rejection control considers the disturbance component of all torques, except for the torque of the moment of inertia of the drive motor, as the total disturbance, which is estimated using an extended state observer. In this paper, we use reduced-order active disturbance rejection control (RADRC) based on a reduced-order extended state observer to lower the order of the observer's gain. RADRC can reduce the order and thus increase the observer’s bandwidth. In addition, by lowering the moment of inertia of the drive motor used in the observer, the observer’s bandwidth can be increased, and the stability of the servo system can be ensured. The speed controller uses only the P controller to reduce the magnitude of the overshoot for the step response. To accurately reflect the system, the proposed method was designed in the discrete time domain. As a result, the proposed method can reliably suppress vibrations caused by the resonance of the mechanical system. Simulations and experiments on a 1.1 kW surface-mounted permanent magnet synchronous motor confirmed the effectiveness of the proposed method.
引用
收藏
页码:1324 / 1333
页数:9
相关论文
共 50 条
  • [21] A wavefront control method based on active disturbance rejection control technology
    Kong, Lingxi
    Cheng, Tao
    Yang, Ping
    Wang, Shuai
    SIXTH SYMPOSIUM ON NOVEL OPTOELECTRONIC DETECTION TECHNOLOGY AND APPLICATIONS, 2020, 11455
  • [22] Improved active disturbance rejection control for permanent magnet synchronous motor position servo system
    Qiu J.-Q.
    Liu R.-C.
    Dianji yu Kongzhi Xuebao/Electric Machines and Control, 2019, 23 (11): : 42 - 50
  • [23] Control strategy of electro-hydraulic position servo system for surface milling machine based on active disturbance rejection control
    Xu L.
    Cai L.
    Li J.
    Hu D.
    Ma H.
    Cai, Liujin (yycailj@163.com), 2018, CIMS (24): : 2770 - 2778
  • [24] Active Disturbance Rejection Control for Hypersonic Flutter Suppression Based on Parametric ROM
    Chen, Zhiqiang
    Zhao, Yonghui
    JOURNAL OF AEROSPACE ENGINEERING, 2020, 33 (06)
  • [25] Active Disturbance Rejection Control of Certain Balanced and Positioning Electro-Hydraulic Servo System Based on Neural Network
    Jia, Litong
    Gao, Qiang
    Hou, Yuanlong
    Jia, Zhiyuan
    Jin, Li
    Li, Kang
    2015 7TH INTERNATIONAL CONFERENCE ON INTELLIGENT HUMAN-MACHINE SYSTEMS AND CYBERNETICS IHMSC 2015, VOL II, 2015,
  • [26] Active Disturbance Rejection Control for the Gimbal Servo System of Magnetically Suspended Single Gimbal Control Momentum Gyroscope
    Wei, Kongming
    Wu, Zhong
    PROCEEDINGS OF THE 10TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION (WCICA 2012), 2012, : 2865 - 2869
  • [27] Active Disturbance Rejection Control for Loading System
    Han, Xiaonan
    Li, Zhi
    2020 CHINESE AUTOMATION CONGRESS (CAC 2020), 2020, : 3564 - 3569
  • [28] Active disturbance rejection control method for valve-controlled electro-hydraulic servo pressure-pulse system
    Su C.-B.
    Wang C.-W.
    Yuan Y.-L.
    Zhao E.-H.
    Quan L.
    Cheng L.
    Kongzhi yu Juece/Control and Decision, 2024, 39 (06): : 1927 - 1935
  • [29] Research on mechanical resonance suppression of electric servo system based on an improved ADRC
    Mo Y.
    Tang X.
    Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics, 2024, 46 (01): : 309 - 317
  • [30] Position control for ball and beam system based on active disturbance rejection control
    Ding, Meiling
    Liu, Bingyou
    Wang, Lichao
    SYSTEMS SCIENCE & CONTROL ENGINEERING, 2019, 7 (01): : 97 - 108