Characterisation of Position Based Dynamics for Elastic Materials

C. Rodero, P. Real, Pedro Zuñeda, C. Monteagudo, M. Lozano, I. García-Fernández
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引用次数: 4

Abstract

Position Based Dynamics (PBD) methodology is a widely used approach for simulation of deformable bodies in the context of video games. Its main advantages over force based methods are its unconditional stability and its constraint based approach. However, it does not involve physically inspired parameters and its behaviour depends on time step size. This makes it difficult to reproduce a given elastic behaviour. In this work we perform an analysis of the mechanical properties in a PBD elastic system, and compare it to the Finite Element Method (FEM). We propose a methodology to fit the parameters of PBD to simulate a particular Young's modulus and Poisson's ratio.
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弹性材料基于位置的动力学特性
基于位置的动力学(PBD)方法是一种广泛应用于模拟电子游戏中可变形物体的方法。与基于力的方法相比,它的主要优点是无条件稳定性和基于约束的方法。然而,它不涉及物理激励参数,其行为取决于时间步长。这使得很难重现给定的弹性行为。在这项工作中,我们对PBD弹性系统的力学性能进行了分析,并将其与有限元法(FEM)进行了比较。我们提出了一种拟合PBD参数的方法来模拟特定的杨氏模量和泊松比。
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