Title :
Embedded estimation of fault parameters in an unmanned aerial vehicle
Author :
Samar, Sikandar ; Gorinevsky, Dimitry ; Boyd, Stephen P.
Author_Institution :
Information Systems Laboratory, Stanford University, CA 94305, U.S.A
Abstract :
In this paper, we present a model-based approach for estimating fault conditions in an aircraft. We formulate fault estimation as a convex optimization problem, where estimates are obtained by solving a constrained quadratic program (QP). A moving horizon framework is used to enable recursive implementation of the constrained QP of fixed size. The estimation scheme takes into account a priori known monotonicity constraints on the faults. Monotonicity implies that the fault conditions can only deteriorate with time. We validate the proposed estimation scheme on a detailed nonlinear simulation model of the Aerosonde unmanned aerial vehicle (UAV) in the presence of winds and turbulence. An excellent performance of the developed approach is demonstrated.
Keywords :
Aerospace control; Aerospace electronics; Aircraft navigation; Aircraft propulsion; Circuit faults; Information systems; Laboratories; Parameter estimation; Quadratic programming; Unmanned aerial vehicles;
Conference_Titel :
Computer Aided Control System Design, 2006 IEEE International Conference on Control Applications, 2006 IEEE International Symposium on Intelligent Control, 2006 IEEE
Conference_Location :
Munich, Germany
Print_ISBN :
0-7803-9797-5
Electronic_ISBN :
0-7803-9797-5
DOI :
10.1109/CACSD-CCA-ISIC.2006.4777161