[1] F.P. Pan, C.H. Chen, R.M. Chen, Y.Q. Zhu, Automatic Power Plant Startup and Shutdown System (APS) Technology and Application, Science Press, Beijing, 2011. 285-291 (in Chinese). [2] B.L. Xiao, Development progress of automation and information technologies for domestic power plants, J. Chin. Soc. Power Eng. 31 (8) (2011) 611-618 (in Chinese). [3] J.Q. Yang, L.H. Ge, R.S. Ling, Features and strategies for control systems of supercritical pressure sets, Power Eng. 25 (2) (2005) 221-225 (in Chinese). [4] S.J. Qin, T.A. Badgwell, A survey of industrial model predictive control technology, Control. Eng. Pract. 11 (7) (2003) 733-764. [5] J.A. Rovnak, R. Corlis, Dynamic matrix based control of fossil power plant, IEEE Trans. Energy Convers. 6 (2) (1991) 320-326. [6] B.P. Gibbs, D.S. Weber, D.W. Porter, Application of nonlinear model predictive control to fossil power plant, Proceedings of 30th Conference on Decision and Control, 1991, pp. 1850-1856. [7] L.A. Sanchez, F.G. Arroyo, R.A. Villavicencio, Dynamic matrix control of steam temperature in fossil power plant, IFAC Control of Power Plants and Power Systems, Cancun, Mexico, 1995. 275-280. [8] U.C. Moon, W.H. Kim, Temperature control of ultrasupercritical once-through boiler-turbine system using multi-input multi-output dynamic matrix control, J. Electr. Eng. Technol. 6 (3) (2011) 423-430. [9] L. Ozkan, M.V. Kothare, C. Georgakis, Model predictive control of nonlinear systems using piecewise linear models, Comput. Chem. Eng. 24 (7) (2000) 793-799. [10] D. Doughterty, D. Cooper, A practical multiplemodel adaptive strategy formultivariable model predictive control, Control. Eng. Pract. 11 (6) (2003) 649-664. [11] K.Y. Lee, J.H. Sickel, J.A. Hoffman, W.H. Jung, S.H. Kim, Controller design for a largescale ultrasupercritical once-through boiler power plant, IEEE Trans. Energy Convers. 25 (4) (2010) 1063-1070. [12] O.Mohamed, J.H. Wang, B. Al-Duri, Study of a multivariable coordinate control for a supercritical power plant process, Proceedings of the 17th International Conference on Automation & Computing, University of Huddersfield, UK, 2011, pp. 69-74. [13] Hou Guolian, Zhang Jinfang, Liu Junjun, Zhang Jianhua, Multiple-model predictive control based on fuzzy adaptive weights and its application to main steam temperature in power plant, Proceedings of the 5th IEEE Conference on Industrial Electronics and Application, Taichung, Taiwan, 2010, pp. 669-673. [14] V.R. Ravi, T. Thyagarajan, M. Monika Darshini, A multiple model adaptive control strategy for model predictive controller for interacting nonlinear systems, Proceedings of 2011 International Conference on Process Automation, Control and Computing, Coimbatore, India, 2011, pp. 1-8. [15] T.Y.Ma,W.H. Gui, C.H. Yang, Y.L. Wang,Multiplemodel predictive control applied in grinding and classification process, Control Decis. 27 (11) (2012) 1716-1719. [16] G.L.Wang,W.W. Yan, S.H. Chen, X. Zhang, H.H. Shao, Multivariable constrained predictive control of 1000 MW ultra-supercritical once-through boiler-turbine system, Control Theory Appl. 29 (12) (2012) 1573-1578 (in Chinese). [17] C. Maffezzoni, Boiler-turbine dynamics in power-plant control, Control. Eng. Pract. 5 (3) (1997) 301-312. [18] C.R. Cutler, B.L. Ramaker, Dynamic matrix control—a computer control algorithm, Proceedings of the Joint Automatic Control Conference, San Francisco, CA, 1980. [19] J. Richalet, A. Rault, J.L. Testud, J. Papon, Algorithmic control of industrial processes, Proceedings of The 4th IFAC Symposium on Identification and SystemParameter Estimation, Tbilisi, 1976, pp. 1119-1167. [20] S. Yan, D.L. Zeng, J.Z. Liu, Q.J. Liang, A simplified non-linear model of a once-through boiler-turbine unit and its application, Proc. CSEE 32 (11) (2012) 126-134 (in Chinese). [21] M. Holmgren, X steam for Matlab, 2006. [22] Z.S. Wang, M. Xia, S.L. Zhao, X.F. He, F. Guo, Coordinated control strategy analysis and optimization of Beilun 1000 MW USC unit, Electr. Power Constr. 31 (1) (2010) 87-94 (in Chinese). |