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Robust H-infinity filtering for time-delay systems with missing measurements: a parameter-dependent approach
作者姓名:Xiao HE  Donghua ZHOU
作者单位:Department of Automation, Tsinghua University, Beijing 100084, China
基金项目:This work was supported by the National Natural Science Foundation of China (No. 60574084), and the National 863 Project (No. 2006AA04ZA28), and the National 973 Program of China (No. 2002CB312200).
摘    要:Robust H-infinity filtering for a class of uncertain discrete-time linear systems with time delays and missing measurements is studied in this paper. The uncertain parameters are supposed to reside in a convex polytope and the missing measurements are described by a binary switching sequence satisfying a Bernoulli distribution. Our attention is focused on the analysis and design of robust H-infinity filters such that, for all admissible parameter uncertainties and all possible missing measurements, the filtering error system is exponentially mean-square stable with a prescribed H-infinity disturbance attenuation level. A parameter-dependent approach is proposed to derive a less conservative result. Sufficient conditions are established for the existence of the desired filter in terms of certain linear matrix inequalities (LMIs). When these LMIs are feasible, an explicit expression of the desired filter is also provided. Finally, a numerical example is presented to illustrate the effectiveness and applicability of the proposed method.

关 键 词:不确定性  测量方法  时间延迟  参数
收稿时间:2006-05-31
修稿时间:2007-03-20

Robust H-infinity filtering for time-delay systems with missing measurements: a parameter-dependent approach
Xiao HE,Donghua ZHOU.Robust H-infinity filtering for time-delay systems with missing measurements: a parameter-dependent approach[J].Journal of Control Theory and Applications,2007,5(4):336-344.
Authors:Xiao HE  Donghua ZHOU
Affiliation:Department of Automation,Tsinghua University,Beijing 100084,China
Abstract:Robust H-infinity filtering for a class of uncertain discrete-time linear systems with time delays and missing measurements is studied in this paper. The uncertain parameters are supposed to reside in a convex polytope and the missing measurements are described by a binary switching sequence satisfying a Bernoulli distribution. Our attention is focused on the analysis and design of robust H-infinity filters such that, for all admissible parameter uncertainties and all possible missing measurements, the filtering error system is exponentially mean-square stable with a prescribed H-infinity disturbance attenuation level. A parameter-dependent approach is proposed to derive a less conservative result. Sufficient conditions are established for the existence of the desired filter in terms of certain linear matrix inequalities (LMIs). When these LMIs are feasible, an explicit expression of the desired filter is also provided. Finally, a numerical example is presented to illustrate the effectiveness and applicability of the proposed method. Robust H-infinity filtering; Polytopic uncertainties; Missing measurements; Time-delays; Parameter dependent; Linear matrix inequalities (LMIs)
Keywords:Robust H-infinity filtering  Polytopic uncertainties  Missing measurements  Time-delays  Parameter dependent  Linear matrix inequalities (LMIs)
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