气动外形设计中无约束和有约束代理辅助进化搜索的全局收敛性

Y. Ong, K. Lum, P. Nair, Daming Shi, Z. Zhang
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引用次数: 35

摘要

在本文中,我们提出了一个有效的气动外形设计的进化框架。该方法建议在设计搜索过程中采用基于梯度的局部搜索方法和替代模型的混合进化算法,以近似计算昂贵的伴随计算流体动力学。特别地,我们揭示了所提出的框架通过继承可信域方法的特性来保证全局收敛,从而在局部搜索期间将目标函数的精确解算器与计算成本低的代理模型交叉使用。利用伴随反压力设计问题进行二维翼型设计的经验结果表明,该方法在有限的计算预算下具有全局收敛性。
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Global convergence of unconstrained and bound constrained surrogate-assisted evolutionary search in aerodynamic shape design
In this paper, we present an evolutionary framework for efficient aerodynamic shape design. The approach suggests employing hybrid evolutionary algorithm with gradient-based local search method in the spirit of Lamarckian and surrogate models that approximates the computationally expensive adjoint computational fluid dynamics during design search. In particular, we reveal that the proposed framework guarantees global convergence by inheriting the properties of trust-region method to interleave use of the exact solver for the objective function with computationally cheap surrogate models during local search. Empirical results on 2D airfoil shape design using an adjoint inverse pressure design problem indicates that the approaches global convergences on a limited computational budget.
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