Yayın: L2 control of LPV systems with saturating actuators: Polya approach
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item.page.editor
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Yayıncı
WILEY
DOI
10.1002/oca.1025
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Özet
This paper addresses the design problem of L2, gain-scheduling non-linear state-feedback controller for linear parameter varying (LPV) systems, subjected to actuator saturations and bounded energy disturbances, by using parameter-dependent type Lyapunov functions. The paper provides a systematic procedure to generate a sequence of linear matrix inequality (LMI) type conditions of increasing precision for obtaining a suboptimal L2 state-feedback controller. The presented method utilizes the modified sector condition for formalization of actuator saturation and homogeneous polynomial parameter-dependent representation of LPV systems. Both simulations and experimental studies on an inverted pendulum on a cart system illustrate the benefits of the approach. Copyright (C) 2011 John Wiley & Sons, Ltd.
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Dergi veya Seri
OPTIMAL CONTROL APPLICATIONS & METHODS
ISSN
0143-2087
ISBN
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Anahtar Kelimeler
homogeneous polynomial parameter-dependent Lyapunov functions , input to state stability , LMIs , actuator saturation , inverted pendulum , real-time control , DEPENDENT LYAPUNOV FUNCTIONS , GUARANTEED COST COMPUTATION , UNCERTAIN LINEAR-SYSTEMS , STABILITY , SUBJECT , OPTIMIZATION , DESIGN , H-2 , Automation & Control Systems , Operations Research & Management Science , Mathematics