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Tracking control and robustness analysis for planar vertical takeoff and landing aircraft under bounded feedbacks
Authors:Aleksandra Gruszka  Michael Malisoff  Frédéric Mazenc
Affiliation:1. Department of Mathematics, Louisiana State University, , 303 Lockett Hall, Baton Rouge, LA 70803‐4918, USA;2. Projet INRIA‐Saclay DISCO, CNRS‐Supelec, , 3 rue Joliot Curie, 91192 Gif‐sur‐Yvette, France
Abstract:We study feedback tracking problems for the planar vertical takeoff and landing (PVTOL) aircraft dynamics, which is a benchmark model in aerospace engineering. We provide a survey of the literature on the model. Then we construct new feedback stabilizers for the PVTOL tracking dynamics. The novelty of our work is in the boundedness of our feedback controllers and their applicability to cases where the velocity measurements may not be available, coupled with the uniform global asymptotic stability and uniform local exponential stability of the closed‐loop tracking dynamics and the input‐to‐state stable performance of the closed‐loop tracking dynamics with respect to actuator errors. Our proofs are based on a new bounded backstepping result. We illustrate our work in a tracking problem along a circle. Copyright © 2011 John Wiley & Sons, Ltd.
Keywords:asymptotic stability  robustness  aerospace
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