Robustness analysis and feedback stabilization of uncertain singular systems

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Abstract

This paper studies complete stability robustness and feedback stabilization problem for uncertain singular systems. New perturbation upper bound that ensures the perturbed singular system remains completely stable (impulse-free and asymptotically stable) is derived. Analysis and examples show that the present result is less conservative than the previous ones. Based on an algorithm for eigenstructure assignment, a procedure to construct a state feedback matrix that maximizes the complete stability robustness bound of the closed-loop system is presented.

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2004 5th Asian Control Conference --

Keywords

Asymptotic stability, Closed loop control systems, Eigenvalues and eigenfunctions, Feedback control, Matrix algebra, Perturbation techniques, Robustness (control systems), System stability, Feedback stabilization, Modulus matrix function, Singular systems, State-variable systems, Uncertain systems

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2

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