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Robust H-infinity filtering for uncertain discrete-time systems using parameter-dependent Lyapunov functions 被引量:3
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作者 Xiaoheng CHANG Guanghong YANG 《控制理论与应用(英文版)》 EI CSCD 2013年第1期122-127,共6页
This paper deals with H-infinity filtering of discrete-time systems with polytopic uncertainties. The un- certain parameters are supposed to reside in a polytope. By using the parameter-dependent Lyapunov function app... This paper deals with H-infinity filtering of discrete-time systems with polytopic uncertainties. The un- certain parameters are supposed to reside in a polytope. By using the parameter-dependent Lyapunov function approach and introducing some slack matrix variables, a new sufficient condition for the H-infinity filter design is presented in terms of solutions to a set of linear matrix inequalities (LMIs). In contrast to the existing results for H-infinity filter design, the main advantage of the proposed design method is the reduced conservativeness. An example is provided to demonstrate the effectiveness of the proposed method. 展开更多
关键词 Discrete-time systems H-infinity filtering Parameter-dependent Lyapunov function Linear matrix in- equalities (LMIs)
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Design of a Discrete-time Output-feedback Based Repetitive-control System 被引量:1
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作者 Lan Zhou Jin-Hua She Min Wu 《International Journal of Automation and computing》 EI CSCD 2013年第4期343-349,共7页
This paper deals with the problem of designing a robust discrete output-feedback based repetitive-control system for a class of linear plants with periodic uncertainties. The periodicity of the repetitive-control syst... This paper deals with the problem of designing a robust discrete output-feedback based repetitive-control system for a class of linear plants with periodic uncertainties. The periodicity of the repetitive-control system is exploited to establish a two-dimensional (2D) model that converts the design problem into a robust stabilization problem for a discrete 2D system. By employing Lyapunov stability theory and the singular-value decomposition of the output matrix, a linear-matrix-inequality (LMI) based stability condition is derived. The condition can be used directly to design the gains of the repetitive controller. Two tuning parameters in the LMI enable the preferential adjustment of control and learning. A numerical example illustrates the design procedure and demonstrates the validity of the method. 展开更多
关键词 Repetitive control discrete two-dimensional system singular-value decomposition output feedback linear matrix in- equality (LMI).
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