Journal article
Aerodynamic Shape Optimization via Global Extremum Seeking
K Lee, WH Moase, SZ Khong, A Ooi, C Manzie
IEEE Transactions on Control Systems Technology | Institute of Electrical and Electronics Engineers | Published : 2015
Abstract
Optimization of aerodynamic shapes using computational fluid dynamics (CFD) approaches has been successfully demonstrated over a number of years; however, the typical optimization approaches employed utilize gradient algorithms that guarantee only the local optimality of the solution. While numerous global optimization techniques exist, they are usually too time consuming in practice. In this brief, a modified global optimization algorithm (DIRECT-L) is introduced and is utilized in the context of sampled-data global extremum seeking. The theoretical framework and conditions under which the convergence to the steady state of the CFD solver can be interpreted as plant dynamics are stated. Thi..
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Grants
Awarded by Australian Research Council
Funding Acknowledgements
This work was supported by the Australian Research Council under Grant LP110200025. Recommended by Associate Editor M. Guay.