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首页> 外文期刊>Journal of Applied Biomechanics >A Numerical Method to Enhance the Accuracy of Mass-Spring Systems for Modeling Soft Tissue Deformations
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A Numerical Method to Enhance the Accuracy of Mass-Spring Systems for Modeling Soft Tissue Deformations

机译:一种提高质量弹簧系统对软组织变形建模精度的数值方法

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摘要

This technical note presents a numerical corrective technique that allows control of nonlin-earity in a mass-spring system (MSS) independent of its spring constants or system topology. The governing equations of MSS in the form of ordinary differential equations or a regular function accompanied by any boundary or initial condition as known constraints, are employed to modify the results. A least-squares algorithm coupled with the finite difference method is used to discretize the basic residual function implemented in this corrective technique. This numerical solution is applicable to both static and dynamic MSS. This technique is easy to implement and has accuracy similar to that of the equivalent finite element method (FEM) solution to the same system whereas solutions are obtained in a fraction of the CPU time. The proposed technique can also be used to smooth solutions from other methods such as FEM or boundary element method (BEM).
机译:本技术说明提出了一种数字校正技术,该技术可以控制质量弹簧系统(MSS)中的非线性误差,而与其弹簧常数或系统拓扑无关。 MSS的控制方程采用常微分方程或带有任何边界或初始条件(作为已知约束)的正则函数的形式来修改结果。最小二乘算法与有限差分法结合使用,以离散化此校正技术中实现的基本残差函数。此数值解适用于静态和动态MSS。此技术易于实现,并且具有与相同系统的等效有限元方法(FEM)解决方案相似的精度,而解决方案仅需花费CPU时间的一小部分即可。提出的技术还可以用于平滑来自其他方法(例如FEM或边界元方法(BEM))的解决方案。

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