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首页> 外文期刊>Journal of applied mathematics >DYNAMIC MODEL OF MULTI-RIGID-BODY SYSTEMS BASED ON PARTICLE DYNAMICS WITH RECURSIVE APPROACH
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DYNAMIC MODEL OF MULTI-RIGID-BODY SYSTEMS BASED ON PARTICLE DYNAMICS WITH RECURSIVE APPROACH

机译:基于粒子动力学的递归方法的多刚体系统动力学模型

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摘要

A dynamic model for multi-rigid-body systems which consists of interconnected rigid bodies based on particle dynamics and a recursive approach is presented. The method uses the concepts of linear and angular momentums to generate the rigid body equations of motion in terms of the Cartesian coordinates of a dynamically equivalent constrained system of particles, without introducing any rotational coordinates and the corresponding rotational transformation matrix. For the open-chain system, the equations of motion are generated recursively along the serial chains. A closed-chain system is transformed to open-chain by cutting suitable kinematical joints and introducing cut-joint constraints. An example is chosen to demonstrate the generality and simplicity of the developed formulation.
机译:提出了一种多刚体系统动力学模型,该模型由基于粒子动力学和递归方法的相互连接的刚体组成。该方法使用线性和角动量的概念根据动态等效约束粒子系统的笛卡尔坐标生成运动的刚体方程,而无需引入任何旋转坐标和相应的旋转变换矩阵。对于开链系统,运动方程是沿着序列链递归生成的。通过切割合适的运动关节并引入切缝约束,可将闭链系统转换为开链。选择一个例子来证明所开发配方的一般性和简单性。

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