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Development of a Novel Actuation Mechanism For a Legged Robot With Mono- and Bi-articulated Drive and Parallel Elasticity

Dan Otaki, Ryuki Sato, Aiguo Ming

Year
2024
Citations
2

Abstract

Bi-articular actuation in animal legs is a key feature in increasing the stability of the postural control and the toe output. In addition, the parallel elasticity of the mono- and bi-articular muscles increases the toe stiffness and improves the legs’ robustness. In this study, we proposed a novel actuation mechanism for a legged robot, which has mono- and bi-articular drive functions and parallel elasticity inspired by a biological muscle-tendon complexes group. We developed a prototype of one-legged robot equipped with the proposed actuation mechanism. The effectiveness of the parallel elastic mechanisms and mono- and bi-articular drive was validated through forward jumping simulation. The experimental result using the prototype demonstrated the robot achieved forward jumping motion of more than twice its leg length.

Keywords

Mechanism (biology)RobotElasticity (physics)ActuatorComputer scienceControl theory (sociology)Control engineeringEngineeringArtificial intelligenceMaterials science

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