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On the determination of the force distribution in overconstrained cable-driven parallel mechanisms

机译:关于受约束的电缆驱动并联机构中力分布的确定

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This paper addresses the determination of the force distribution in the cables of a redundantly actuated cable-driven parallel mechanism. First, the static model of cable-driven parallel mechanisms is derived based on the wrench matrix. Then, four performance indices are considered in order to solve the underdetermined problem associated with the distribution of the forces. A simple numerical example is then developed in order to provide insight into the problem, which leads to a geometric interpretation of the results. Based on the presented results, it is proposed to use a p-norm (e.g. a 4-norm) to optimize the distribution of the forces in a cable-driven parallel mechanism in order to minimize the largest deviations from the median forces (or other target values) while maintaining continuity in the solution. A non-iterative polynomial formulation is then proposed for the 4-norm. It is also pointed out that this formulation leads to a unique real solution.
机译:本文探讨了冗余驱动电缆驱动并联机构的电缆中力分布的确定。首先,基于扳手矩阵推导了电缆驱动并联机构的静态模型。然后,考虑四个性能指标以解决与力的分配有关的不确定的问题。然后开发一个简单的数值示例,以提供对问题的了解,从而对结果进行几何解释。根据给出的结果,建议使用p范数(例如4范数)来优化电缆驱动并联机构中力的分布,以最大程度地减小与中值力(或其他力)的最大偏差目标值),同时保持解决方案的连续性。然后针对4-范数提出了一个非迭代多项式公式。还需要指出的是,这种表述导致了独特的实际解决方案。

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