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A Robotic Finger With a 4-Bar Linkage-Based Compact and Continuously Variable Active Transmission

S.-M. Chung, E. Sohn, Seokhwan Jeong

Year
2024
Citations
2

Abstract

This letter presents a practical design implementation of 4-bar linkage-based compact and continuously variable active transmission (CCVAT) specifically tailored for the form factor of a robotic finger. The proposed CCVAT aims to solve the two major limitations of conventional linkage-based continuously variable transmission: increased inertia and complexities associated with miniaturization. To counter these limitations, our design incorporates a custom flexible shaft within the joint of the robotic finger, enhancing its adaptability and operational efficiency. In addition, we proposed a cascaded control architecture, combining a disturbance-observer-based low-level controller and a mid-level controller responsible for managing both the transmission ratio and flexion angle of the system. Finally, the feasibility of the prototype was evaluated by conducting several experiments.

Keywords

Continuously variable transmissionLinkage (software)Bar (unit)Variable (mathematics)Transmission (telecommunications)Computer scienceArtificial intelligenceComputer visionMathematicsPhysics

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