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A multi-point reduced-order modeling approach of transient structural dynamics with application to robust design optimization

机译:结构瞬态动力学的多点降阶建模方法及其在稳健设计中的应用

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摘要

Predicting the transient response of structures by high-fidelity simulation models within design optimization and uncertainty quantification often leads to unacceptable computational cost. This paper presents a reduced-order modeling (ROM) framework for approximating the transient response of linear elastic structures over a range of design and random parameters. The full-order response is projected onto a lower-dimensional basis spanned by modes computed from a proper orthogonal decomposition (POD) of full-order model simulation results at multiple calibration points. The basis is further enriched by gradients of the POD modes with respect to the design/random parameters. A truncation strategy is proposed to compensate for the increase in basis vectors due to the proposed enrichment strategies. The accuracy, efficiency and robustness of the proposed framework are studied with a two-dimensional model problem. The numerical results suggest that the proposed ROM approach is well suited for large parameter changes and that the number of basis vectors needs to be increased only linearly with the number of design and random parameters to maintain a particular ROM performance. The application of the proposed ROM approach to robust shape optimization demonstrates significant savings in computational cost over using full-order models.
机译:在设计优化和不确定性量化范围内通过高保真仿真模型预测结构的瞬态响应通常会导致无法接受的计算成本。本文提出了一种降阶建模​​(ROM)框架,用于在一系列设计和随机参数范围内近似线性弹性结构的瞬态响应。将全阶响应投影到一个较低维的基础上,该阶域由从多个校准点处的全阶模型仿真结果的适当正交分解(POD)计算出的模式所跨越。 POD模式相对于设计/随机参数的梯度进一步丰富了基础。提出了一种截断策略来补偿由于所提出的富集策略而导致的基向量增加。利用二维模型问题研究了所提出框架的准确性,效率和鲁棒性。数值结果表明,所提出的ROM方法非常适合于较大的参数更改,并且基向量的数量仅需随设计和随机参数的数量线性增加即可保持特定的ROM性能。所提出的ROM方法在鲁棒形状优化中的应用证明,与使用全阶模型相比,可显着节省计算成本。

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