A Kinematic-Decouple Model for Cable-Driven Manipulators with Series-Parallel Coupling Relationship
The kinematic model of cable-driven manipulators is more complicated than conventional robots due to the series-parallel coupling relationship. In this article, the kinematic-decouple model is proposed, which considers the series and parallel relationships of cable-driven manipulators. Firstly, the...
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Veröffentlicht in: | Mechanics of solids 2023-06, Vol.58 (3), p.912-921 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The kinematic model of cable-driven manipulators is more complicated than conventional robots due to the series-parallel coupling relationship. In this article, the kinematic-decouple model is proposed, which considers the series and parallel relationships of cable-driven manipulators. Firstly, the parallel relationship between cables and joints is analyzed based on characteristics of the structure. The series relationship of the cable-driven manipulator is solved by the Jacobi pseudo-inverse iterative method. The mapping relationship is established among task space, joint space, and driving space. Then, the configuration and end-trajectory of cable-driven manipulators are both simulated. Finally, the experiment proves the effectiveness of the kinematic-decouple model. |
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ISSN: | 0025-6544 1934-7936 |
DOI: | 10.3103/S0025654423700097 |