This paper describes a general physical background that originates integro-differential problems with specific reference to aero-elastic coupling, and offers two techniques of control for this class of problems. The central result of the paper is that integro-differential equations with kernel exponential series admit an optimal solution described, in turn, by a Volterra integral equation in terms of the control. Numerical simulations show how controls prevent the flutter instability of a two-dimensional wing and a wind turbine blade.
Feedback Volterra control of integro-differential equations / Pepe, G., Paifelman, E., Carcaterra, A.. - In: INTERNATIONAL JOURNAL OF CONTROL. - ISSN 0020-7179. - 96:11(2023), pp. 2651-2670. [10.1080/00207179.2022.2109513]
Feedback Volterra control of integro-differential equations
Pepe, G.
Primo
Membro del Collaboration Group
;Paifelman, E.;Carcaterra, A.
2023
Abstract
This paper describes a general physical background that originates integro-differential problems with specific reference to aero-elastic coupling, and offers two techniques of control for this class of problems. The central result of the paper is that integro-differential equations with kernel exponential series admit an optimal solution described, in turn, by a Volterra integral equation in terms of the control. Numerical simulations show how controls prevent the flutter instability of a two-dimensional wing and a wind turbine blade.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


