Data Mining and Model-Predictive Approach for Blast Furnace Thermal Control

被引:0
|
作者
Shnayder, D. A. [1 ]
Barbasova, T. A. [1 ]
Kazarinov, L. S. [1 ]
Lipatnikov, A., V [1 ]
机构
[1] South Ural State Univ, Automat & Control Dept, Chelyabinsk, Russia
关键词
Blast furnace process; clustering; model-predictive control; self-organizing Kohonen networks; real-time control; effective regimes; SELF-ORGANIZING MAPS; MULTIOBJECTIVE OPTIMIZATION; IRON; IRONMAKING;
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This research proposes a method of blast furnace control based on criteria of increased productivity and lowers coke consumption. The method employs model-predictive control technology. Herewith constructing the model of the blast furnace process involves real-time operating regime data. Model-building assumes two approaches for clustering of operating parameters values using criteria of blast furnace efficiency. The first one uses elliptic surfaces. The second employs self-organizing Kohonen networks. Moreover when having the lack of informative measurements data the solution of the first task is used to normalize the solution of the second task. The research sets and solves the problem of real-time optimization of the blast furnace regime parameters.
引用
收藏
页码:653 / 660
页数:8
相关论文
共 50 条
  • [21] Automation on thermal control of blast furnace
    Masuda, Ryosuke
    Hashimoto, Yoshinari
    Mulder, Max
    van Paassen, Marinus M.
    Kano, Manabu
    DIGITAL CHEMICAL ENGINEERING, 2023, 7
  • [22] Enhancing Autonomous Vehicle Lateral Control: A Linear Complementarity Model-Predictive Control Approach
    Ye, Ning
    Wang, Duo
    Dai, Yong
    APPLIED SCIENCES-BASEL, 2023, 13 (19):
  • [23] A Model-Predictive Urban Traffic Control Approach with a Modified Flow Model and Endpoint Penalties
    Jamshidnejad, Anahita
    Papamichail, Ioannis
    Papageorgiou, Markos
    De Schutter, Bart
    IFAC PAPERSONLINE, 2016, 49 (03): : 147 - 152
  • [24] A distributed approach to model-predictive control of radiant comfort delivery systems in office spaces with localized thermal environments
    Joe, Jaewan
    Karava, Panagiota
    Hou, Xiaodong
    Xiao, Yingying
    Hu, Jianghai
    ENERGY AND BUILDINGS, 2018, 175 : 173 - 188
  • [25] Constrained model-predictive thermal dose control for MRI-guided ultrasound thermal treatments
    Arora, D
    Perry, T
    Cooley, D
    Guo, JY
    Hadley, R
    Minor, MA
    Parker, D
    Skliar, M
    Roemer, RB
    Thermal Treatment of Tissue: Energy Delivery and Assessment III, 2005, 5698 : 195 - 206
  • [26] MODEL-PREDICTIVE CONTROL - PAST, PRESENT AND FUTURE
    FROISY, JB
    ISA TRANSACTIONS, 1994, 33 (03) : 235 - 243
  • [27] Stochastic optimization for optimal and model-predictive control
    Banga, JR
    Irizarry-Rivera, R
    Seider, WD
    COMPUTERS & CHEMICAL ENGINEERING, 1998, 22 (4-5) : 603 - 612
  • [28] Grouped neural network model-predictive control
    Ou, J
    Rhinehart, RR
    CONTROL ENGINEERING PRACTICE, 2003, 11 (07) : 723 - 732
  • [29] Model-predictive Control of a Cement Rotary Kiln
    Schumacher, M.
    Weng, M.
    Kuessel, U.
    Abel, D.
    Burgwinkel, D.
    Jovicic, N.
    Mueller-Pfeiffer, M.
    25. DEUTSCHER FLAMMENTAG: VERBRENNUNG UND FEUERUNG, 2011, 2119 : 413 - 419
  • [30] Filter-Aware Model-Predictive Control
    Kayalibay, Baris
    Mirchev, Atanas
    Agha, Ahmed
    van der Smagt, Patrick
    Bayer, Justin
    LEARNING FOR DYNAMICS AND CONTROL CONFERENCE, VOL 211, 2023, 211