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Deformation Modeling and Path Generation for Linear Object Manipulation

机译:线性对象操纵的变形建模与路径生成

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A systematic approach to the deformation modeling of linear objects such as cords or wires and the path generation for their manipulation is developed. First, a deformation modeling method of a linear object is proposed. Its shape can be represented by use of Eule-rian angles, and it is computed by minimizing the potential energy under geometric constraints. Secondly, a path generation method for linear object manipulation is proposed. We assume that the path on which the maximum potential energy of the object becomes minimum is most suitable for its manipulation. The optimal path can be derived by introducing the deformation path vector and computing it which minimizes the maximum potential energy during manipulation. Finally, the validity of these methods is demonstrated with a measuring experiment.
机译:开发了用于线性物体的变形建模的系统方法,例如绳索或电线以及其操纵的路径生成。首先,提出了线性对象的变形建模方法。它的形状可以通过使用Eule-rian角度来表示,并且通过最小化几何约束下的潜在能量来计算。其次,提出了一种用于线性对象操纵的路径生成方法。我们假设物体的最大势能变为最小的路径最适合其操纵。可以通过引入变形路径向量并计算其在操纵期间最小化最大电位能量来导出最佳路径。最后,用测量实验证明了这些方法的有效性。

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