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Hybrid Estimation of State and Input for Linear Discrete Time-varying Systems: A Game Theory Approach
线性离散时变系统的状态和输入混合估计: 一种对策方法

Keywords: Time-varying system,input estimation,game theory,Riccati equation
Time-varying
,system,input,estimation,game,theory,Riccati,equation,线性,离散时变系统,状态,输入,混合估计,对策方法,Systems,Discrete,Linear,Input,State,Estimation,Hybrid,Approach,numerical,example,internal,input,and,output,characterized,gain

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Abstract:

The H∞ hybrid estimation problem for linear discrete time-varying systems is investigated in this paper, where estimated signals are linear combination of state and input. Design objective requires the worst-case energy gain from disturbance to estimation error to be less than a prescribed level. Optimal solution of the hybrid estimation problem is the saddle point of a two-player zero sum differential game. On the basis of the differential game approach, necessary and sufficient solvable conditions for the hybrid estimation problem are provided in terms of solutions to a Riccati differential equation. Moreover, one possible estimator is proposed if the solvable conditions are satisfied. The estimator is characterized by a gain matrix and an output mapping matrix, where the latter reflects the internal relations between unknown input and output estimation error. At last, a numerical example is provided to illustrate the proposed approach.

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