Dynamics Simulation with Unilateral Constraints in Virtual Assembly

Jian-cheng Shi, Jianhua Liu, R. Ning, Weiwei Hou, Wan-ying Xia
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Abstract

Physically-based modeling is used in virtual assembly system to improve the feeling of immersion and make the evaluation results convinced. The handling of unilateral constraints is the capstone of modeling physical behaviors. To take advantage of both impulse-based method and analytical method, hybrid scheme for adaptive simulation is presented, where the constraint states can be transited automatically. Collision is solved using impulse-based method while contact with friction is handled by formulating to linear complementarity problem. To make these methods efferent, physical models are reorganized according to the assembly hierarchy. The scheme and methods were implemented in the prototype system Virtual Assembly Process Planning (VAPP). It proved the algorithms can meet the requirement of rigid body simulation in virtual assembly system.
具有单边约束的虚拟装配动力学仿真
在虚拟装配系统中采用基于物理的建模方法,提高了虚拟装配系统的沉浸感,使评价结果具有说服力。对单边约束的处理是物理行为建模的顶点。为了充分利用基于脉冲的方法和解析方法的优点,提出了约束状态自动转换的自适应仿真混合方案。采用基于脉冲的方法求解碰撞问题,将摩擦接触问题表述为线性互补问题。为了使这些方法有效,根据装配层次结构对物理模型进行了重组。该方案和方法在原型系统虚拟装配工艺规划(VAPP)中得到了实现。结果表明,该算法能够满足虚拟装配系统中刚体仿真的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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