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NASA NTRS · 20170009847

Switching State-Feedback LPV Control with Uncertain Scheduling Parameters

Abstract

This paper presents a new method to design Robust Switching State-Feedback Gain-Scheduling (RSSFGS) controllers for Linear Parameter Varying (LPV) systems with uncertain scheduling parameters. The domain of scheduling parameters are divided into several overlapped subregions to undergo hysteresis switching among a family of simultaneously designed LPV controllers over the corresponding subregion with the guaranteed H-infinity performance. The synthesis conditions are given in terms of Parameterized Linear Matrix Inequalities that guarantee both stability and performance at each subregion and associated switching surfaces. The switching stability is ensured by descent parameter-dependent Lyapunov function on switching surfaces. By solving the optimization problem, RSSFGS controller can be obtained for each subregion. A numerical example is given to illustrate the effectiveness of the proposed approach over the non-switching controllers.

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BibTeXRIS

He, Tianyi, Al-Jiboory, Ali Khudhair, Swei, Sean Shan-Min, Zhu, Guoming G.. 2017-05-24. Switching State-Feedback LPV Control with Uncertain Scheduling Parameters. https://ntrs.nasa.gov/citations/20170009847

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