(Xi Y G, Li D W. Fundamental philosophy and status of qualitative synthesis of model predictive control[J]. Acta Automatica Sinica, 2008, 34(10): 1225-1234.)
[4]
钱积新, 赵均, 徐祖华. 预测控制[M]. 北京: 化学工业出版社, 2007: 1-3.
[5]
Bemporad A, Pena D M. Multiobjective model predictive control[J]. Automatica, 2009, 45(12): 2823-2830.
[6]
Tyler M L, Morari M. Propositional logic in control and monitoring problmes[J]. Automatica, 1999, 35(4): 565-582.
(Zou T, Wang X, Li S L. Multi-medel predictive control for nonlinear systems based on mixed logic[J]. Acta Automatica Sinica, 2007, 33(2): 188-192.)
[9]
Long C E, Gatzke E P. Hard constraints for prioritized objective nonlinear mpc[C]. Assessment and Future Directions, Lecture Notes in Control and Information. Berlin: Springer-Verlag, 2007: 217-228.
[10]
Wang Y H, Huang D X, Ji Y H. A hybrid model predictive control for handling infeasibility and constraint prioritization[J]. Chinese J of Chemical Engineering, 2005,13(2): 211-217.
[11]
Magni L, Scattolini R, Tanelli M. Switched model predictive control for performance enhancement[J]. Int J of Control, 2008, 81(12): 1859-1869.
[12]
Muller M A, Allgower F. Improving performance in model predictive control: Switching cost functions under average dwell-time[J]. Automatica, 2012, 48(2): 402-409.
[13]
Victor M Z, Antonio F T. Stability of multiobjective predictive control: An utopia-tracking approach[J]. Automatica, 2012, 48(10): 2627-2632.
[14]
Antonio F T, Pilar M, Martin R T. Multiobjective nonlinear model predictive control of a class of chemical reactors[J]. Industrial & Engineering Chemistry Research, 2012, 51(17): 5891-5899.
(Wu G, Lu X D, Zhang Z G, et al. Modular multivariable predictive controller[C]. Proc of the 3rdWorld Congress on Inteliligent Control and Automation. Hefei, 2000: 2780-2796.)
[17]
Meadowcraft T A, Stephanopoulos G. The modular multivariable controller: I steady-state properties[J]. AIChE J, 1992, 38(8): 1254-1278.
[18]
Zheng T, Wu G, He D F. Nonlinear model predictive control based on lexicographic multi-objective genetic algorithm[C]. Proc of IEEE Int Conf on Intelligent and Advanced Systems. Malaysia, 2007: 61-65.
[19]
Kerrigan E, Maciejowshi J. Designing model predictive controllers with prioritised constraints and objectives[C]. Proc of IEEE Int Symposium on Computer-Aided Control System Design. Glasgov, 2002: 33-38.
[20]
Ocampo-Martinez C, Ingimundarson A, Puig V, et al. Objective prioritization using lexicographic minimizers for mpc of sewer networks[J]. IEEE Trans on Control System Technology, 2008, 16(1): 113-121.
[21]
(Qian J X, Zhao J, Xu Z H. Predictive control[M]. Beijing: Chemical Industry Press, 2007: 1-3.)
(Zhang Q, Zheng T. Predictive control based on lexicographic mulit-objective genetic algorithm[J]. Pattern Recegnition and Artifical Intellegence, 2008, 21(6): 831-835.)
(Wang Y H, Huang D X, Gao D J, et al. Hybrid method to handle feasibility and constraint prioritization issues in predictive control[J]. Control and Decision, 2004, 19(8):847-851.)
[26]
Chinchuluun A, Pardalos P M. A survey of recent developments in multiobjective optimization[J]. Annals of Operation Research, 2007, 154(1): 29-50.
[27]
Vada J, Slupphaug O, Johansen T A, et al. Optimal prioritized infeasibility handling in model predictive control: Parametric preemptive multiobjective linear programming approach[J]. J of Optimization Theory and Applications, 2001, 109(2): 385-413.