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Robust predictive control of polytopic uncertain systems with both state and input delays 被引量:4

Robust predictive control of polytopic uncertain systems with both state and input delays
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摘要 A robust model predictive control algorithm for discrete linear systems with both state and input delays subjected to constrained input control is presented, where the polytopic uncertainties exist in both state matrices and input matrices. The algorithm optimizes an upper bound with respect to a state feedback control law. The feedback control law is presented based on the construction of a parameter-dependent Lyapunov function. The above optimization problem can be formulated as a LMI-based optimization. The feasibility of the optimization problem guarantees that the algorithm is robustly stable. The simulation results verify the effectiveness of the proposed algorithm. A robust model predictive control algorithm for discrete linear systems with both state and input delays subjected to constrained input control is presented, where the polytopic uncertainties exist in both state matrices and input matrices. The algorithm optimizes an upper bound with respect to a state feedback control law. The feedback control law is presented based on the construction of a parameter-dependent Lyapunov function. The above optimization problem can be formulated as a LMI-based optimization. The feasibility of the optimization problem guarantees that the algorithm is robustly stable. The simulation results verify the effectiveness of the proposed algorithm.
机构地区 Inst. of Automation
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2007年第3期616-621,共6页 系统工程与电子技术(英文版)
关键词 predictive control robust control time-delay system linear matrix inequality. predictive control, robust control, time-delay system, linear matrix inequality.
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参考文献10

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  • 1Piao Fengxian,Zhang Qingling,Ma Xiuzhen.Robust H_∞ control for uncertain descriptor systems with state and control delay[J].Journal of Systems Engineering and Electronics,2006,17(3):571-575. 被引量:2
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