Robust stabilization for uncertain switched impulsive control systems with state delay: An LMI approach |
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Authors: | Guangdeng Zong Shengyuan Xu Yuqiang Wu |
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Affiliation: | aResearch Institute of Automation, Qufu Normal University, Qufu, Shandong 273165, People’s Republic of China;bSchool of Automation, Nanjing University of Science & Technology, Nanjing 210094, People’s Republic of China |
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Abstract: | ![]() This paper deals with the problem of robust H∞ state feedback stabilization for uncertain switched linear systems with state delay. The system under consideration involves time delay in the state, parameter uncertainties and nonlinear uncertainties. The parameter uncertainties are norm-bounded time-varying uncertainties which enter all the state matrices. The nonlinear uncertainties meet with the linear growth condition. In addition, the impulsive behavior is introduced into the given switched system, which results a novel class of hybrid and switched systems called switched impulsive control systems. Using the switched Lyapunov function approach, some sufficient conditions are developed to ensure the globally robust asymptotic stability and robust H∞ disturbance attenuation performance in terms of certain linear matrix inequalities (LMIs). Not only the robustly stabilizing state feedback H∞ controller and impulsive controller, but also the stabilizing switching law can be constructed by using the corresponding feasible solution to the LMIs. Finally, the effectiveness of the algorithms is illustrated with an example. |
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Keywords: | Switched linear systems Impulse effects Robust asymptotic stability mml5" > text-decoration:none color:black" href=" /science?_ob=MathURL&_method=retrieve&_udi=B8CX8-4TVG1WP-1&_mathId=mml5&_user=10&_cdi=40080&_rdoc=28&_acct=C000054348&_version=1&_userid=3837164&md5=3a49525881aa61bd69913027ce3fbee4" title=" Click to view the MathML source" alt=" Click to view the MathML source" >H∞ stabilization Parameter uncertainties |
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