Steam temperature controller with LS-SVR-based predictor and PID gain scheduler in thermal power plant

被引:0
|
作者
O.-Shin Kwon
Won-Hee Jung
Hoon Heo
机构
[1] Korea University,Department of Control & Instrumentation Engineering
[2] Doosan Heavy Industries & Construction,Plant Control System Development Team, R&D Center
关键词
Thermal power plant; Steam temperature control; Least square support vector machine for regression (LS-SVR); LS-SVR-based predictor; Anti-reset windup algorithm;
D O I
暂无
中图分类号
学科分类号
摘要
Nonlinearity and time delay in thermal power plant processes during the period of steady state load have been reported to be efficiently compensated for by controlling the open rate of sprays and an angle of burner tilt using a conventional cascade PID controller. However, it is not easy to compensate severe nonlinearity and time delays simultaneously due to feed water and coal flow variations during load changes. This paper introduces advanced method to mitigate these problems. A predictor based on the least square support vector machine for regression (LS-SVR) algorithm is developed to efficiently compensate the nonlinearity in the boiler system, and it enables accurate modeling of the steam temperature by applying LS-SVR algorithm by using one variable, steam temperature, for the superheater and reheater systems. Moreover, the predictor enables to compensate the time delay by generating a prior control action, based on the predicted steam temperature after a certain time interval. An LS-SVR-based predictor is combined with a PID controller that uses a gain scheduler based on an anti-reset windup algorithm to enable more sensitive and efficient steam temperature control during load changes to the boiler system in a thermal power plant. A load-changing simulation is conducted, and the proposed steam temperature controller demonstrates a more stable and efficient performance than a conventional cascade PID controller.
引用
下载
收藏
页码:557 / 565
页数:8
相关论文
共 50 条
  • [31] Application of fuzzy-RBF-based PID controller in superheated steam temperature control system
    Department of Construct Device and Thermal Energy Engineering, Pingdingshan Institute of Technology, Pingdingshan 467000, China
    Dianli Zidonghua Shebei Electr. Power Autom. Equip., 2007, 11 (48-50):
  • [32] The prediction research of steam reheating temperature in power plants based on LS-SVM
    Liu, Zhenbing
    Jiang, Shujie
    Yang, Huihua
    Pan, Xipen
    MIPPR 2013: PATTERN RECOGNITION AND COMPUTER VISION, 2013, 8919
  • [33] On the application of predictive punctional control in steam temperature systems of thermal power plant
    Han, P
    Wang, GY
    Wang, DF
    42ND IEEE CONFERENCE ON DECISION AND CONTROL, VOLS 1-6, PROCEEDINGS, 2003, : 6559 - 6564
  • [34] Research of Intelligent Control Policy on Main Steam Temperature of Thermal Power Plant
    Luo Yu-feng
    Liu Lu-lu
    ELECTRICAL INFORMATION AND MECHATRONICS AND APPLICATIONS, PTS 1 AND 2, 2012, 143-144 : 307 - 311
  • [35] VARIATION OF PLANT ELECTRICAL OUTPUT DUE TO MAIN STEAM TEMPERATURE AND THERMAL POWER
    Yoon, D. W.
    Park, C. K.
    Lee, B. H.
    Jeong, K. C.
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE 2010, VOL 7, 2010, : 135 - 140
  • [36] Reheat steam temperature composite control system based on CMAC neural network and immune PID controller
    Peng, Daogang
    Zhang, Hao
    Yang, Ping
    ADVANCES IN NEURAL NETWORKS - ISNN 2007, PT 1, PROCEEDINGS, 2007, 4491 : 302 - +
  • [37] The Main Steam Temperature Cascade PID Controller Parameters Tuning Optimization Based on Ant Colony Algorithm
    Hu, Jiming
    Ji, Qingshan
    MEASUREMENT TECHNOLOGY AND ITS APPLICATION, PTS 1 AND 2, 2013, 239-240 : 1442 - 1447
  • [38] Application of PID Controller Based on BP Neural Network in Export Steam's Temperature Control System
    朱增辉
    孙慧影
    Journal of Measurement Science and Instrumentation, 2011, (01) : 84 - 87
  • [39] Gain-Scheduled Smith Predictor PID-Based LPV Controller for Open-Flow Canal Control
    Bolea, Yolanda
    Puig, Vicenc
    Blesa, Joaquim
    IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, 2014, 22 (02) : 468 - 477
  • [40] Design and Implementation of Smith Predictor Based Fractional Order PID Controller on MIMO Flow-Level Plant
    Azarmi, Roohallah
    Sedigh, Ali Khaki
    Tavakoli-Kakhki, Mahsan
    Fatehi, Alireza
    2015 23RD IRANIAN CONFERENCE ON ELECTRICAL ENGINEERING (ICEE), 2015, : 858 - 863