Wing rock is a rolling motion characterized by self-excited oscillations which appears at high angles of attack in aircraft with highly-swept wings. In this paper an analyti- cal model describing this phenomenon is presented for simple wing and wing-fuselage layouts. The parameters of the model were derived through numerical tting of ex- perimental data. For both cases an L1 adaptive controller is applied to suppress the wing rock motion for dierent angles of attack and initial conditions. Adaptation ca- pability is assessed testing the controller action on a model subjected to parametric disturbances. The controller can suppress the motion with satisfactory performance for both congurations, even when disturbed.

Performance evaluation of an L1 adaptive controller for wing-body rock suppression / Capello, Elisa; Guglieri, Giorgio; Sartori, Daniele. - In: JOURNAL OF GUIDANCE CONTROL AND DYNAMICS. - ISSN 0731-5090. - STAMPA. - 35:6(2012), pp. 1702-1708. [10.2514/1.57595]

Performance evaluation of an L1 adaptive controller for wing-body rock suppression

CAPELLO, ELISA;GUGLIERI, GIORGIO;SARTORI, DANIELE
2012

Abstract

Wing rock is a rolling motion characterized by self-excited oscillations which appears at high angles of attack in aircraft with highly-swept wings. In this paper an analyti- cal model describing this phenomenon is presented for simple wing and wing-fuselage layouts. The parameters of the model were derived through numerical tting of ex- perimental data. For both cases an L1 adaptive controller is applied to suppress the wing rock motion for dierent angles of attack and initial conditions. Adaptation ca- pability is assessed testing the controller action on a model subjected to parametric disturbances. The controller can suppress the motion with satisfactory performance for both congurations, even when disturbed.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2503178
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