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Derivative-Free Line-Search Algorithm for Multi-Fidelity Optimization

机译:多保真优化的无衍生线路搜索算法

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The paper presents a multi-fidelity coordinate-search derivative-free algorithm for non-smooth constrained optimization (MF-CS-DFN), in the context of simulation-based design optimization (SBDO). The objective of the work is the development of an optimization algorithm able to improve the convergence speed of the SBDO process. The proposed algorithm is of a line-search type and can handle objective function evaluations performed with variable accuracy. The algorithm automatically selects the accuracy of the objective function evaluation based an internal steplength parameter. The MF-CS-DFN algorithm starts the optimization with low accuracy and low-cost evaluations of the objective function, then the accuracy (and evaluation cost) is increased. The method is coupled with a potential flow solver whose accuracy is determined by the computational grid size. No surrogate models are used in the current study. The algorithm is applied to the hull-form optimization of a destroyer-type vessel in calm water using 14 hull-shape parameters as design variables. The optimization aims at the total resistance reduction. Seven refinements of the computational grid are used by the multi-fidelity optimizations. Four setups of the MF-CS-DFN algorithm are tested and compared with an optimization performed only on the finest grid. The results show that three of the tested setups achieve better performance than the high-fidelity optimization, converging to a lower resistance value with a reduced computational cost.
机译:本文在基于模拟的设计优化(SBDO)的上下文中,提供了一种用于非平滑约束优化(MF-CS-DFN)的多保真坐标 - 搜索衍生算法。工作的目的是开发能够提高SBDO过程的收敛速度的优化算法。所提出的算法是线路搜索类型,可以处理以可变精度执行的客观函数评估。该算法基于内部Steplencth参数自动选择目标函数评估的准确性。 MF-CS-DFN算法以低精度和低成本评估开始优化目标函数,然后提高准确度(和评估成本)。该方法与电位流求解器耦合,其精度由计算网格尺寸确定。目前的研究中没有使用代理模型。使用14个船体形状参数作为设计变量,将该算法应用于平静的水中的驱逐舰型容器的船体优化。优化旨在减少总阻力。多保真优化使用计算网格的七种改进。测试MF-CS-DFN算法的四个设置,并与仅在最优选网格上执行的优化进行比较。结果表明,三个测试的设置可以实现比高保真优化更好的性能,从而降低计算成本降低的电阻值。

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