Title of article
Aeroelastic stability analysis considering a continuous flight envelope
Author/Authors
Bueno، نويسنده , , Douglas Domingues and José Paupitz Gonçalves، نويسنده , , Paulo and Carlos Sandoval Gَes، نويسنده , , Luiz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
12
From page
716
To page
727
Abstract
This paper presents a new methodology to analyze aeroelastic stability in a continuous range of flight envelope with varying parameter of velocity and altitude. The focus of the paper is to demonstrate that linear matrix inequalities can be used to evaluate the aeroelastic stability in a region of flight envelope instead of a single point, like classical methods. The proposed methodology can also be used to study if a system remains stable during an arbitrary motion from one point to another in the flight envelope, i.e., when the problem becomes time-variant. The main idea is to represent the system as a polytopic differential inclusion system using rational function approximation to write the model in time domain. The theory is outlined and simulations are carried out on the benchmark AGARD 445.6 wing to demonstrate the method. The classical pk-method is used for comparing results and validating the approach. It is shown that this method is efficient to identify stability regions in the flight envelope.
Keywords
Continuous flight envelope , Flutter , LMI , Polytopic systems
Journal title
Journal of Fluids and Structures
Serial Year
2014
Journal title
Journal of Fluids and Structures
Record number
2214609
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