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首页> 外文期刊>Structural and Multidisciplinary Optimization >Trajectory driven multidisciplinary design optimization of a sub-orbital spaceplane using non-stationary Gaussian process
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Trajectory driven multidisciplinary design optimization of a sub-orbital spaceplane using non-stationary Gaussian process

机译:使用非平稳高斯过程的亚轨道航天飞机的轨迹驱动多学科设计优化

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摘要

This paper presents the multidisciplinary optimization of an aircraft carried sub-orbital spaceplane. The optimization process focused on three disciplines: the aerodynamics, the structure and the trajectory. The optimization of the spaceplane geometry was coupled with the optimization of its trajectory. The structural weight was estimated using empirical formulas. The trajectory was optimized using a pseudo-spectral approach with an automated mesh refinement that allowed for increasing the sparsity of the Jacobian of the constraints. The aerodynamics of the spaceplane was computed using an Euler code and the results were used to create a surrogate model based on a non-stationary Gaussian process procedure that was specially developed for this study.
机译:本文介绍了飞机运载的亚轨道航天飞机的多学科优化。优化过程集中在三个方面:空气动力学,结构和轨迹。空间平面几何形状的优化与其轨迹的优化相结合。结构重量是使用经验公式估算的。使用伪光谱方法对轨迹进行了优化,并采用了自动网格细化功能,可以增加约束的雅可比矩阵的稀疏度。使用Euler码计算空间飞机的空气动力学,并将结果用于基于为该研究专门开发的非平稳高斯过程程序创建替代模型。

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