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Communication Dans Un Congrès Année : 2016

Prediction-based control of linear input-delay system subject to state-dependent state delay – Application to suppression of mechanical vibrations in drilling

Delphine Bresch-Pietri
Florent Di Meglio

Résumé

In this paper, we consider linear dynamics subject to a distributed state-dependent delay and a pointwise input-delay. We propose a prediction-based controller which exponentially stabilizes the plant. The controller design is based on a backstepping approach where delays are reformulated as hyperbolic transport PDEs. Infinity-norm stability analysis of the corresponding closed-loop system is addressed. We show that this result is of interest to suppress mechanical vibrations arising in drilling facilities, which have been attributed recently to a coupling between torsional and vertical displacement involving an implicit state delay equation. Numerical simulations illustrate the merits of our controller in this context.
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Dates et versions

hal-01348998 , version 1 (26-07-2016)

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  • HAL Id : hal-01348998 , version 1

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Delphine Bresch-Pietri, Florent Di Meglio. Prediction-based control of linear input-delay system subject to state-dependent state delay – Application to suppression of mechanical vibrations in drilling. CPDE 2016 - 2nd IFAC Workshop on Control of Systems governed by Partial Differential Equations, Jun 2016, Bertinoro, Italy. ⟨hal-01348998⟩
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