Modified active disturbance rejection control for fluidized bed combustor

被引:24
|
作者
Wu, Zhenlong [1 ]
Li, Donghai [1 ]
Xue, Yali [1 ]
Sun, Liming [2 ]
He, Ting [1 ]
Zheng, Song [3 ]
机构
[1] Tsinghua Univ, Dept Energy & Power Engn, State Key Lab Power Syst, Beijing 100084, Peoples R China
[2] Key Intelligence Beijing Technol Co Ltd, Beijing 102300, Peoples R China
[3] Fuzhou Univ, Dept Automat, Fuzhou 350000, Peoples R China
基金
中国国家自然科学基金;
关键词
Fluidized bed combustor; Modified active disturbance rejection control; High order system; Control performance; Peltier temperature control platform; STEAM TEMPERATURE CONTROL; AIR-FUEL RATIO; POWER-PLANT; BOILER; DESIGN; DELAY; ADRC; PI;
D O I
10.1016/j.isatra.2020.03.003
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
As a widely-used technology, fluidized bed combustor (FBC) boiler is facing many control challenges such as coupling, high-order dynamics and nonlinearity. With more and more sustainable energy integrating into the bulk power system, the FBC boiler is obliged to speed up the respond to the automatic generation control command and this results in great challenges for keeping the bed temperature in the desired range. To this end, a modified active disturbance rejection control (MADRC) is put forward for high order systems with the type of K/(Ts + 1)(n) to enhance the control quality of the FBC boiler. Firstly, a simulation is carried out to discuss the estimation ability of the MADRC. A theorem about the stability analysis of the MADRC is provided and proofed theoretically. To help the field personnel to understand and use more easily, an effective tuning procedure is also concluded. Besides, a tuning toolbox based on the tuning procedure is established. Simulations and comparative experiments based on the Peltier temperature control platform validate the superiority of the MADRC, where the MADRC is able to enhance the control quality. Then the MADRC and other comparative controllers (the proportional integral controller and the regular ADRC) are designed for the FBC boiler. Simulation results illustrate that the MADRC can obtain the best performance. Statistical indices show that the MADRC has the smallest overshoot and shortest settling time. In addition, the MADRC still has the strongest ability to reject the input and coal quality variation disturbances. The advantages of the MADRC guarantee the high control quality and can be applied to industrial practice widely. (C) 2020 ISA. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:135 / 153
页数:19
相关论文
共 50 条
  • [31] Model predictive control of circulating fluidized bed coal combustor
    Li Shi
    Hu Yan
    Zong Xiju
    ADVANCES IN MECHATRONICS, AUTOMATION AND APPLIED INFORMATION TECHNOLOGIES, PTS 1 AND 2, 2014, 846-847 : 73 - 76
  • [32] FUZZY-LOGIC CONTROL OF A FLUIDIZED-BED COMBUSTOR
    KOFFMAN, SJ
    FULLMER, RR
    BROWN, RC
    PROCEEDINGS OF THE 1989 AMERICAN CONTROL CONFERENCE, VOLS 1-3, 1989, : 2756 - 2758
  • [33] Bottom Bed in Circulating Fluidized Bed Combustor
    Kovenskii, V. I.
    THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2019, 53 (05) : 793 - 814
  • [34] Bottom Bed in Circulating Fluidized Bed Combustor
    V. I. Kovenskii
    Theoretical Foundations of Chemical Engineering, 2019, 53 : 793 - 814
  • [35] A Novel Design of Active Disturbance Rejection Controller and Its Application in the Circulating Fluidized Bed Boiler Combustion System
    Pan, Fengping
    Liu, Qian
    Sun, Li
    Li, Donghai
    Tan, Wen
    2015 AMERICAN CONTROL CONFERENCE (ACC), 2015, : 3950 - 3955
  • [36] A modified active disturbance rejection control for fast steering mirror in aerospace application
    Zheng, Xintao
    Huang, Hai
    Li, Weipeng
    10TH ASIAN-PACIFIC CONFERENCE ON AEROSPACE TECHNOLOGY AND SCIENCE & THE 4TH ASIAN JOINT SYMPOSIUM ON AEROSPACE ENGINEERING (APCATS'2019 /AJSAE'2019), 2020, 1509
  • [37] Active Disturbance Rejection Control of Active Power Filter
    Liu, Nixuan
    Fei, Juntao
    2016 19TH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS 2016), 2016,
  • [38] Polypropylene Combustion in a Fluidized Bed Combustor
    Han, J.
    Shimizu, T.
    Wataru, M.
    Kim, H.
    Wang, G.
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2010, 32 (12) : 1121 - 1129
  • [39] Dynamic modeling for simulation and control of a circulating fluidized-bed combustor
    Muir, JR
    Brereton, C
    Grace, JR
    Lim, CJ
    AICHE JOURNAL, 1997, 43 (05) : 1141 - 1152
  • [40] Improved Robust Adaptive Control of a Fluidized Bed Combustor for Sewage Sludge
    MENG Hong-Xia JIA Ying-Min(The Seventh Research Division
    自动化学报, 2005, (04) : 70 - 74