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The discrete null space method for the energy consistent integration of constrained mechanical systems Part Ⅰ: Holonomic constraints

机译:约束机械系统能量一致积分的离散零空间方法第一部分:完整约束

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The present work deals with energy consistent time stepping schemes for finite-dimensional mechanical systems with holonomic constraints. The proposed procedure is essentially based upon the following steps: Firstly, the index three differential-algebraic equations corresponding to the constrained mechanical system are directly discretized. Secondly, the discrete Lagrange multipliers are eliminated by using a discrete null space matrix. In many cases it is feasible to further reduce the number of unknowns by employing specific reparametrizations. The proposed method entails a number of advantageous features such as size-reduction and improved conditioning of the resulting system of algebraic equations. It is shown that the newly developed method is well-suited for both open-loop and closed-loop multibody systems.
机译:本工作涉及具有完整约束的有限维机械系统的能量一致时间步进方案。所提出的过程基本上基于以下步骤:首先,直接离散化对应于受约束的机械系统的索引三个微分-代数方程。其次,通过使用离散零空间矩阵消除离散Lagrange乘法器。在许多情况下,通过采用特定的重新设置参数来进一步减少未知数是可行的。所提出的方法具有许多有利的特征,例如尺寸减小和所得代数方程组的改进条件。结果表明,新开发的方法非常适合开环和闭环多体系统。

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