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Material Uncertainty Effect on Vibration Control of Smart Composite Plate Using Polynomial Chaos Expansion
Journal article   Peer reviewed

Material Uncertainty Effect on Vibration Control of Smart Composite Plate Using Polynomial Chaos Expansion

K. Umesh, Ranjan Ganguli and Umesh Kizhakkinan
Mechanics of advanced materials and structures, Vol.20(7), pp.580-591
09/08/2013

Abstract

composite material uncertainty Monte Carlo simulation piezoelectric polynomial chaos expansion vibration control
Polynomial chaos expansion with Latin Hypercube sampling is used to study the effect of material uncertainty on vibration control of a smart composite plate with piezoelectric sensors/actuators. Composite material properties and piezoelectric coefficients are considered as independent and normally distributed random variables. Numerical results show substantial variation in structural dynamic response due to material uncertainty of active vibration control system. This change in response due to material uncertainty can be compensated by actively tuning the feedback control system. Numerical results also show variation in dispersion of dynamic characteristics and control parameters with respect to ply angle and stacking sequence.

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