International Journal of Control, Automation and Systems 2007; 5(5): 492-500
© The International Journal of Control, Automation, and Systems
This paper focuses on the problem of guaranteed cost control for a class of uncertain linear delay systems with actuator failures. When actuators suffer “serious failure” the never failed actuators can not stabilize the system, based on switching strategy of average dwell time method, under the condition that activation time ratio between the system without actuator failure and the system with actuator failures is not less than a specified constant, a sufficient condition for exponential stability and weighted guaranteed cost performance are developed in terms of linear matrix inequalities (LMIs). Finally, as an example, a river pollution control problem illustrates the effectiveness of the proposed approach.
Keywords Actuator failures, average dwell time, guaranteed cost control, linear matrix inequalities (LMIs), switched delay system.
International Journal of Control, Automation and Systems 2007; 5(5): 492-500
Published online October 1, 2007
Copyright © The International Journal of Control, Automation, and Systems.
Rui Wang and Jun Zhao*
Northeastern University, China
This paper focuses on the problem of guaranteed cost control for a class of uncertain linear delay systems with actuator failures. When actuators suffer “serious failure” the never failed actuators can not stabilize the system, based on switching strategy of average dwell time method, under the condition that activation time ratio between the system without actuator failure and the system with actuator failures is not less than a specified constant, a sufficient condition for exponential stability and weighted guaranteed cost performance are developed in terms of linear matrix inequalities (LMIs). Finally, as an example, a river pollution control problem illustrates the effectiveness of the proposed approach.
Keywords: Actuator failures, average dwell time, guaranteed cost control, linear matrix inequalities (LMIs), switched delay system.
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