Evolutionary optimisation methods with uncertainty for modern multidisciplinary design in aeronautical engineering


Autoria(s): Lee, Dong-Seop; Gonzalez, Luis F.; Periaux, Jacques; Srinivas, Kavita
Data(s)

2009

Resumo

One of the new challenges in aeronautics is combining and accounting for multiple disciplines while considering uncertainties or variability in the design parameters or operating conditions. This paper describes a methodology for robust multidisciplinary design optimisation when there is uncertainty in the operating conditions. The methodology, which is based on canonical evolution algorithms, is enhanced by its coupling with an uncertainty analysis technique. The paper illustrates the use of this methodology on two practical test cases related to Unmanned Aerial Systems (UAS). These are the ideal candidates due to the multi-physics involved and the variability of missions to be performed. Results obtained from the optimisation show that the method is effective to find useful Pareto non-dominated solutions and demonstrate the use of robust design techniques.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/29814/

Publicador

Springer

Relação

http://eprints.qut.edu.au/29814/1/2010003914_Published_Paper.pdf

DOI:10.1007/978-3-540-70805-6_21

Lee, Dong-Seop, Gonzalez, Luis F., Periaux, Jacques, & Srinivas, Kavita (2009) Evolutionary optimisation methods with uncertainty for modern multidisciplinary design in aeronautical engineering. In 100 Volumes of Notes on Numerical Fluid Mechanics. Springer, Berlin / Heidelberg, pp. 271-284.

Direitos

Copyright 2009 Springer

Fonte

Faculty of Built Environment and Engineering; School of Engineering Systems

Palavras-Chave #090101 Aerodynamics (excl. Hypersonic Aerodynamics) #090106 Flight Dynamics #Evolutionary Optimisation #Uncertainty #Multidisciplinary Design #UAVs
Tipo

Book Chapter