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Data-driven optimization approach for mass-spring models parametrization based on isogeometric analysis

机译:基于等几何分析的质量弹簧模型参数化数据驱动优化方法

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The development of a systematic procedure to set up the parameters in a Mass-Spring Model (MSM) remains an open problem because the model parameters are not related to the constitutive laws of elastic material in an obvious way. One possibility to address this problem is to calculate MSM parameters from a reference model based on continuum mechanics and finite element (FEM) techniques. The traditional approaches in this area use isoparametric FEM, with linear shape functions, as the reference model. Recently, Isogeometric Analysis (IGA) has been used as new method for the analysis of problems governed by partial differential equations where Non-uniform Rational B-Splines (NURBS) are considered as basis of the analysis. Therefore, in this paper we propose a new method to derive MSM parameters using a data-driven strategy based on IGA approach. In this way, we propose a methodology for MSM derivation that is not restricted to a particular mesh topology and can consider higher order polynomial interpolation functions using the NURBS machinery. We validate the methodology for deriving MSM systems to simulate 2D/3D deformable objects. The obtained results are compared with related works in order to show the efficiency of our technique. We also discuss its robustness and issues against different NURBS geometry, order elevation, different discretizations and material properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于在明显的方式下模型参数与弹性材料的本构律不相关,因此开发用于在质量弹簧模型(MSM)中设置参数的系统程序仍然是一个未解决的问题。解决此问题的一种可能性是基于连续力学和有限元(FEM)技术从参考模型中计算MSM参数。该领域的传统方法使用具有线性形状函数的等参有限元法作为参考模型。最近,等几何分析(IGA)已被用作分析偏微分方程所控制问题的新方法,其中以非均匀有理B样条(NURBS)为分析基础。因此,本文提出了一种基于IGA方法的数据驱动策略推导MSM参数的新方法。通过这种方式,我们提出了一种不限于特定网格拓扑的MSM推导方法,并且可以考虑使用NURBS机制的高阶多项式插值函数。我们验证了推导MSM系统以模拟2D / 3D可变形对象的方法。将获得的结果与相关工作进行比较,以证明我们技术的有效性。我们还将讨论其鲁棒性以及针对不同NURBS几何形状,阶高,离散化和材料特性的问题。 (C)2017 Elsevier B.V.保留所有权利。

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