DocumentCode :
237322
Title :
Development of digital flight methodology based on aerodynamic approximation
Author :
Othman, Norazila ; Kanazaki, Masahiro
Author_Institution :
Grad. Sch. of Syst. Design, Tokyo Metropolitan Univ., Hino, Japan
fYear :
2014
fDate :
27-29 Nov. 2014
Firstpage :
406
Lastpage :
411
Abstract :
Digital flight is the study commonly called flight simulation. In flight simulation analysis, the biggest challenges are about preparing the complete databases that can be invoked as result files in future. The ability to simulate in a computer regarding the flight motion must be convinced the governing equations of motion for six-degree of freedom. The accuracy of a flight simulation depends to a large extent on the quality of an aerodynamic model database prediction. Key objective is to fly and simulate an aircraft in a computer environment with sufficient level of autonomy under the interest variables. In order to realize the goals, a surrogate model is used as the prediction function based on sampling data obtained by the design of experiments. The sample data for models are acquired from the USAF Stability and Control DATCOM which is considered as exact function, and a database is constructed for two main variables angle of attack and Mach number along the X-force axis, Z-force axis, and pitching, rolling and yawing moment respectively. Furthermore, a comparison value of exact and predicted function was compared through the Means Square Error (MSE). The validation for the digital flight was qualified through the mode motion analysis and flying qualities scale to prove the mission level of the flight status.
Keywords :
Mach number; aerodynamics; aerospace simulation; mean square error methods; sampling methods; MSE; Mach number; USAF Stability and Control DATCOM; X-force axis; Z-force axis; aerodynamic approximation; aerodynamic model database prediction quality; angle of attack; digital flight methodology; equations of motion; flight motion; flight simulation analysis; flying qualities; mean square error; mode motion analysis; pitching; prediction function; rolling; sampling data; yawing moment; Aerodynamics; Aircraft; Eigenvalues and eigenfunctions; Equations; Mathematical model; Stability analysis; Digital flight; equation of motion; flight simulation; surrogate model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mecatronics (MECATRONICS), 2014 10th France-Japan/ 8th Europe-Asia Congress on
Conference_Location :
Tokyo
Type :
conf
DOI :
10.1109/MECATRONICS.2014.7018601
Filename :
7018601
Link To Document :
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