JSBSim is an open source flight dynamics library written in the C++ programming language. In this paper, we discuss a simplex-based trimming algorithm to be applied to complex nonlinear aircraft JSBSim models. Some test cases on a Boeing 737, an F-16, and a Multiplex Easy Star UAV (unmanned aerial vehicle) have been used to verify the algorhithm. We briefly discuss the usage of our added GUI (graphical user interface) for the trimming and linearization algorithms. In addition, we give an overview of the JSBSim block for the open source Scicos block diagram environment.

On Some Trim Strategies for Nonlinear Aircraft Flight Dynamics Models with Open Source Software JSBSim / J., Goppert; DE MARCO, Agostino; I., Hwang. - 1:(2011), pp. 784-799. (Intervento presentato al convegno Third CEAS Air and Space Conference, Venice, Italy, 24-28 October 2011 tenutosi a Venice, Italy nel 24-28 October 2011).

On Some Trim Strategies for Nonlinear Aircraft Flight Dynamics Models with Open Source Software JSBSim

DE MARCO, AGOSTINO;
2011

Abstract

JSBSim is an open source flight dynamics library written in the C++ programming language. In this paper, we discuss a simplex-based trimming algorithm to be applied to complex nonlinear aircraft JSBSim models. Some test cases on a Boeing 737, an F-16, and a Multiplex Easy Star UAV (unmanned aerial vehicle) have been used to verify the algorhithm. We briefly discuss the usage of our added GUI (graphical user interface) for the trimming and linearization algorithms. In addition, we give an overview of the JSBSim block for the open source Scicos block diagram environment.
2011
9788896427187
On Some Trim Strategies for Nonlinear Aircraft Flight Dynamics Models with Open Source Software JSBSim / J., Goppert; DE MARCO, Agostino; I., Hwang. - 1:(2011), pp. 784-799. (Intervento presentato al convegno Third CEAS Air and Space Conference, Venice, Italy, 24-28 October 2011 tenutosi a Venice, Italy nel 24-28 October 2011).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/403686
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