Abstract
Continuum robots are suitable for operating in unstructured environments owing to their intrinsic compliance. This paper presents a novel tendon-driven continuum robot equipped with two modules and a compliant backbone formed by helical springs. Each module is driven by four parallel arranged tendons to implement a redundant actuation system that guarantees dexterous motions of the robot. A position feedback controller for the continuum robot is then developed, and a quadratic programming algorithm is incorporated into the controller to achieve a smooth configuration of the robot. Experiments results show that the control method has good trajectory tracking performance against external disturbances.
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CITATION STYLE
Li, M., Kang, R., Geng, S., & Guglielmino, E. (2018). Design and control of a tendon-driven continuum robot. Transactions of the Institute of Measurement and Control, 40(11), 3263–3272. https://doi.org/10.1177/0142331216685607
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