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Eliminating constraint drift in the numerical simulation of constrained dynamical systems

机译:消除约束动力系统数值模拟中的约束漂移

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By means of the Udwadia-Kalaba approach we propose an explicit equation of constrained motion developed to simulate constrained dynamical systems without error accumulation due to constraint drift. The basic idea is to embed a small virtual force and a small virtual impulse to the equation of motion, in order to avoid the drift typically experienced in constrained multibody simulations. The embedded correction terms are selected to minimally alter the dynamics in an acceleration and kinetic energy norm sense. The formulation allows one to use a standard ODE solver, avoiding the need for iterative constraint stabilization. The equation is based on the pseudoinverse of a constraint matrix such that it can be used under redundant constraints and kinematic singularities. The proposed method takes into account the finite word-length of the computational environment, and also accommodates possibly inconsistent initial conditions.
机译:通过Udwadia-Kalaba方法,我们提出了一个显式的受约束运动方程,该方程被开发为模拟受约束动力学系统,而不会由于约束漂移而产生误差累积。基本思想是在运动方程中嵌入一个小的虚拟力和一个小的虚拟脉冲,以避免约束多体仿真中通常会出现的漂移。选择嵌入的校正项以最小化加速度和动能范数意义上的动力学。该公式允许使用标准ODE求解器,从而避免了迭代约束稳定化的需要。该方程式基于约束矩阵的伪逆,因此可以在冗余约束和运动奇异性下使用。所提出的方法考虑了计算环境的有限字长,并且还适应了可能不一致的初始条件。

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