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The role of PDE-based parameterization techniques in gradient-based IGA shape optimization applications

机译:基于PDE的参数化技术在基于梯度的IGA形状优化应用中的作用

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This paper proposes a shape optimization algorithm based on the principles of Isogeometric Analysis (IGA) in which the parameterization of the geometry enters the problem formulation as an additional PDE-constraint. Inspired by the isoparametric principle of IGA, the parameterization and the governing state equation are treated using the same numerical technique. This leads to a scheme that is comparatively easy to differentiate, allowing for a fully symbolic derivation of the gradient and subsequent gradient-based optimization. To improve the efficiency and robustness of the scheme, the basis is re-selected during each optimization iteration and adjusted to the current needs. The scheme is validated in two test cases. (C) 2021 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于ISogeometric分析(IGA)原理的形状优化算法,其中几何体的参数化进入问题制剂作为额外的PDE约束。灵感来自IGA的异戊酰胺原理,使用相同的数值技术处理参数化和控制状态方程。这导致了相对容易易于区分的方案,允许完全符号衍生梯度和随后的基于梯度的优化。为了提高方案的效率和稳健性,在每个优化迭代期间重新选择基础并调整到当前需求。该方案在两个测试用例中验证。 (c)2021 Elsevier B.V.保留所有权利。

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