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首页> 外文期刊>SIAM Journal on Scientific Computing >THE EXACT COMPUTATION OF THE FREE RIGID BODY MOTION AND ITS USE IN SPLITTING METHODS
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THE EXACT COMPUTATION OF THE FREE RIGID BODY MOTION AND ITS USE IN SPLITTING METHODS

机译:自由刚体运动的精确计算及其在分裂方法中的应用

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This article investigates the use of the computation of the exact free rigid body motion as a component of splitting methods for rigid bodies subject to external forces. We review various matrix and quaternion representations of the solution of the free rigid body equation which involve Jacobi ellipic functions and elliptic integrals and are amenable to numerical computations. We consider implementations which are exact (i.e., computed to machine precision) and semiexact (i.e., approximated via quadrature formulas). We perform a set of extensive numerical comparisons with state-of-the-art geometrical integrators for rigid bodies, such as the preprocessed discrete Moser_Veselov method. Our numerical simulations indicate that these techniques, combined with splitting methods, can be favorably applied to the numerical integration of torqued rigid bodies.
机译:本文研究了精确的自由刚体运动的计算方法,将其作为承受外力的刚体分裂方法的一部分。我们回顾了自由刚体方程解的各种矩阵和四元数表示形式,这些方程涉及Jacobi椭圆函数和椭圆积分,并且可以进行数值计算。我们考虑精确(即计算为机器精度)和半精确(即通过正交公式近似)的实现。我们使用最先进的刚体几何积分器,例如预处理的离散Moser_Veselov方法,进行了一系列广泛的数值比较。我们的数值模拟表明,这些技术与分割方法相结合,可以很好地应用于扭矩刚体的数值积分。

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