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Non-fragile delay-dependent H_∞ control of linear time-delay system with uncertainties in state and control input 被引量:2

Non-fragile delay-dependent H_∞ control of linear time-delay system with uncertainties in state and control input
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摘要 The problem of designing a non-fragile delay-dependent H∞ state-feedback controller was investigated for a linear time-delay system with uncertainties in state and control input. First, a recently derived integral inequality method and Lyapunov-Krasovskii stability theory were used to derive new delay-dependent bounded real lemmas for a non-fragile state-feedback controller containing additive or multiplicative uncertainties. They ensure that the closed-loop system is internally stable and has a given H∞ disturbance attenuation level. Then, methods of designing a non-fragile H∞ state feedback controller were presented. No parameters need to be tuned and can be easily determined by solving linear matrix inequalities. Finally, the validity of the proposed methods was demonstrated by a numerical example with the asymptotically stable curves of system state and controller output under the initial condition of x(0)=1 0 -1]T and h=0.8 time-delay boundary. The problem of designing a non-fragile delay-dependent H∞ state-feedback controller was investigated for a linear time-delay system with uncertainties in state and control input. First, a recently derived integral inequality method and Lyapunov-Krasovskii stability theory were used to derive new delay-dependent bounded real lemmas for a non-fragile state-feedback controller containing additive or multiplicative uncertainties. They ensure that the closed-loop system is internally stable and has a given H∞ disturbance attenuation level. Then, methods of designing a non-fragile H∞ state feedback controller were presented. No parameters need to be tuned and can be easily determined by solving linear matrix inequalities. Finally, the validity of the proposed methods was demonstrated by a numerical example with the asymptotically stable curves of system state and controller output under the initial condition of x(0)=[1 0 -1]^T and h=0.8 time-delay boundary.
出处 《Journal of Central South University of Technology》 2008年第5期712-719,共8页 中南工业大学学报(英文版)
基金 Project(60574014) supported by the National Natural Science Foundation of China Project(20050533015) supported by the Doctor Subject Foundation of China Project(60425310) supported by the National Science Foundation for Distinguished Youth Scholars, China
关键词 非线性控制系统 不确定性 冶金学 技术性能 uncertain systems delay-dependent criterion non-fragile control linear matrix inequality(LMI)
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