Parallel-filter-based observer control for unknown multiple narrow-band disturbance rejection

被引:2
|
作者
Xu, TianRong [1 ,2 ]
Feng, Nian [1 ,2 ,3 ]
Ruan, Yong [1 ,2 ,3 ]
Tang, Tao [1 ,2 ]
机构
[1] Chinese Acad Sci, Key Lab Opt Engn, Chengdu 610209, Peoples R China
[2] Inst Opt & Elect, Chinese Acad Sci, Chengdu 610209, Peoples R China
[3] Univ Chinese Acad Sci, Beijing 100039, Peoples R China
基金
中国国家自然科学基金;
关键词
Narrow-band disturbance; Adaptive observers control; Parallel Q-filter; Multiple frequencies; TIP-TILT MIRROR; TRACKING; SYSTEMS; VIBRATION;
D O I
10.1016/j.isatra.2023.09.008
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
An observer-based control method with parallel Q-filter is proposed to reject unknown multiple narrow-band disturbances for line of sight stabilization in telescope systems. In general, wide-band or multiple narrow-band disturbances rejection of observer-based control can be transformed into designing Q-filter, which could be too high-order to achieve fully-accuracy digital implementation, resulting in degrading the closed-loop performance or even causing instability. Therefore, a new parallel type of Q-filters is proposed to flexibly adjust the number of Q-filter in the sensitivity function and effectively reduce the computational complexity. A sufficient condition of the effectiveness for the parallel Q-filter and the closed-loop stability is derived and verified through simulations. Furthermore, disturbance frequencies can be on-line identified to adaptively optimize the Q-filter parameters. The effectiveness of the proposed method is validated on the image-based stabilization subsystem of a segmented lightweight large-scaled diffractive telescope. (c) 2023 ISA. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:622 / 629
页数:8
相关论文
共 50 条
  • [31] Research on Electronic Materials with Design on the Narrow-band FIR Filter Based on Multiple Sampling Frequency
    Shan, Huilin
    Zhang, Yinsheng
    MATERIALS IN INDUSTRY AND NANOTECHNOLOGY, 2013, 771 : 179 - 182
  • [32] Aliased Narrow-Band Disturbance Rejection Using Phase-Stabilization Above Nyquist Frequency
    Tan, Yan Zhi
    Pang, Chee Khiang
    Hong, Fan
    Lee, Tong Heng
    IEEE TRANSACTIONS ON MAGNETICS, 2013, 49 (06) : 2693 - 2696
  • [33] A narrow band-rejection filter based on block copolymers
    Yamanaka, Takahiko
    Hara, Shigeo
    Hirohata, Toru
    OPTICS EXPRESS, 2011, 19 (24): : 24583 - 24588
  • [34] Narrow-band interference rejection in DS CDMA communications using an adaptive IIR notch filter
    Mvuma, A
    Nishimura, S
    Hinamoto, T
    2002 45TH MIDWEST SYMPOSIUM ON CIRCUITS AND SYSTEMS, VOL II, CONFERENCE PROCEEDINGS, 2002, : 404 - 407
  • [35] Narrow-band Rejection Filter for Suppression of Harmonic Concentrated Interference on the Basis of Discrete Fourier Transform
    Fainzilberg, L. S.
    Glushauskene, G. A.
    JOURNAL OF AUTOMATION AND INFORMATION SCIENCES, 2009, 41 (08) : 55 - 70
  • [36] Design of a Narrow-Band Filter Based on the Brewster phenomenon for microwave applications
    Coves, Angela
    Marini, Stephan
    Gimeno, Benito
    Sanchez, Daniel
    Rodriguez, Ana
    Boria, Vicente
    2017 XXXIIND GENERAL ASSEMBLY AND SCIENTIFIC SYMPOSIUM OF THE INTERNATIONAL UNION OF RADIO SCIENCE (URSI GASS), 2017,
  • [37] Narrow-Band Plasmonic Filter Based on Graphene Waveguide with Asymmetrical Structure
    Luo, Xin
    Zhai, Xiang
    Wang, Lingling
    Lin, Qi
    PLASMONICS, 2015, 10 (06) : 1427 - 1431
  • [38] Narrow-Band Plasmonic Filter Based on Graphene Waveguide with Asymmetrical Structure
    Xin Luo
    Xiang Zhai
    Lingling Wang
    Qi Lin
    Plasmonics, 2015, 10 : 1427 - 1431
  • [39] Disturbance rejection control for Raymond mill grinding system based on disturbance observer
    牛丹
    陈夕松
    杨俊
    周杏鹏
    Journal of Central South University, 2017, 24 (09) : 2019 - 2027
  • [40] Disturbance rejection control for Raymond mill grinding system based on disturbance observer
    Dan Niu
    Xi-song Chen
    Jun Yang
    Xing-peng Zhou
    Journal of Central South University, 2017, 24 : 2019 - 2027