通过多个恒定曲率管实现更高性能的同心管机器人

Alex Lu, Felipe Ramos, JuiTeng Lin, Tania. K. Morimoto
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引用次数: 0

摘要

同心管机器人(CTRs)由一组可伸缩的预弯曲管组成,其整体形状可以通过相互平移和旋转管来主动控制。到目前为止,大多数ctr都是由分段的等曲率管组成的,其中一段是直线,一段是单一的等曲率管。已经为CTR设计提出了几种方法,这些方法可以改善诸如工作空间、可定向性、灵活性和稳定性等指标。在这里,我们建议使用具有多个等曲率截面的CTRs。我们进行了两个仿真研究,比较了多个恒曲率管和标准单恒曲率管的性能。我们还演示了如何使用所提出的多个恒定曲率设计之一,从而减少所需的管数,以实现与标准三管CTR相同的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enabling Higher Performance Concentric Tube Robots Via Multiple Constant-Curvature Tubes
Concentric tube robots (CTRs) consist of a set of telescoping, pre-curved tubes, whose overall shape can be actively controlled by translating and rotating the tubes with respect to each other. The majority of CTRs to date consist of piecewise constant-curvature tubes, with a straight section followed by a single constant-curvature section. Several approaches have been proposed for CTR designs that can lead to improvements in metrics such as the workspace, orientability, dexterity, and stability. Here we propose to use CTRs with multiple constant-curvature sections. We perform two simulation studies that compare the performance of the multiple constant-curvature CTRs with standard single constant-curvature tubes. We also demonstrate how using one of the proposed multiple constant-curvature designs can enable the reduction in the number of tubes needed to achieve the same performance as a standard three-tube CTR.
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