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Design of a Variable Stiffness Quasi-Direct Drive Cable-Actuated Tensegrity Robot

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arxiv 2409.05751 v1 pith:CEXWZR7F submitted 2024-09-09 cs.RO

Design of a Variable Stiffness Quasi-Direct Drive Cable-Actuated Tensegrity Robot

classification cs.RO
keywords designrobottensegritystiffnesscablepayloadactuatordrive
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Tensegrity robots excel in tasks requiring extreme levels of deformability and robustness. However, there are challenges in state estimation and payload versatility due to their high number of degrees of freedom and unconventional shape. This paper introduces a modular three-bar tensegrity robot featuring a customizable payload design. Our tensegrity robot employs a novel Quasi-Direct Drive (QDD) cable actuator paired with low-stretch polymer cables to achieve accurate proprioception without the need for external force or torque sensors. The design allows for on-the-fly stiffness tuning for better environment and payload adaptability. In this paper, we present the design, fabrication, assembly, and experimental results of the robot. Experimental data demonstrates the high accuracy cable length estimation (<1% error relative to bar length) and variable stiffness control of the cable actuator up to 7 times the minimum stiffness for self support. The presented tensegrity robot serves as a platform for future advancements in autonomous operation and open-source module design.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Scalable Open-Source Visuotactile Sensor for 6-Axis Contact Wrench Estimation in Tensegrity Robots

    cs.RO 2026-07 conditional novelty 6.0

    A 130 mm open-source visuotactile endcap uses optically tracked marker motion and a residual MLP to estimate 6-axis contact wrenches, enabling ground-contact detection on tensegrity robots.