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General Information
Editor-in-chief
Prof. Adrian Olaru
University Politehnica of Bucharest, Romania
I'm happy to take on the position of editor in chief of IJMO. It's a journal that shows promise of becoming a recognized journal in the area of modelling and optimization. I'll work together with the editors to help it progress.
IJMO 2019 Vol.9(6): 317-321 ISSN: 2010-3697
DOI: 10.7763/IJMO.2019.V9.729

Flight Envelope Expansion Via Piezoelectric Actuation Receptance Method and Time-delayed Feedback Control

Daniela Enciu, Ioan Ursu, George Tecuceanu, Dragos Daniel Ion Guta, Andrei Halanay, and Mihai Tudose

Abstract—In aerodynamics, the phenomenon of flutter suppression represents a great challenge. Since it is a complex and difficult process, it requires an innovative approach. In this paper, a V-shaped piezoelectric actuator whose role is to widen the aircraft flight envelope by raising the speed limit at which flutter occurs is presented. The demonstrator is in fact an intelligent model of wing, which is itself a control system, with sensors, piezo actuator and an implemented control law. The control law is obtained through the receptance method of eigenvalues assignment using the measured transfer function. The content of the paper refers to technical solutions for wing model design and to experimental results in subsonic wind tunnel. Another contribution of the paper concern the consideration of a time-delayed feedback control.

Index Terms—Piezoelectric actuator, flutter, flight envelope, time-delay, feedback control, receptance method

The authors are with National Institute for Aerospace Research “Elie Carafoli” – INCAS, Bucharest, Romania and University Politehnica of Bucharest, Department of Mathematics and Informatics, Bucharest, Romania (e-mail: enciu.daniela@incas.ro, tecuceanu.george@incas.ro, guta.dragos@incas.ro, halanay@mathem.pub.ro, tudose.mihai@incas.ro)

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Cite: Daniela Enciu, Ioan Ursu, George Tecuceanu, Dragos Daniel Ion Guta, Andrei Halanay, and Mihai Tudose, "Flight Envelope Expansion Via Piezoelectric Actuation Receptance Method and Time-delayed Feedback Control," International Journal of Modeling and Optimization vol. 9, no. 6, pp. 317-321, 2019.

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