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Prototype design of a novel modular two-degree-of-freedom variable stiffness actuator

Maarten Weckx, Ronald Van Ham, Heidi Cuypers, René Jiménez-Fabián, Diego Torricelli, José L. Pons, Bram Vanderborght, Dirk Lefeber

Year
2014
Citations
2

Abstract

In bio-inspired robotic applications, multiple-degree-of-freedom actuators are often desired. The current state of the art of variable stiffness actuators consist mostly of different concepts for single-degree-of-freedom joints. An innovative Mechanically Adjustable Compliance and Controllable Equilibrium Position Actuator (MACCEPA) concept is presented to specifically accommodate implementation in two-degree-of-freedom joints. A prototype design, based on this concept, is furthermore presented. The working principle and relevant design choices are explained, a zero-dynamic model is derived for future design iterations, and the implementation in a first prototype is discussed.

Keywords

ActuatorModular designStiffnessControl theory (sociology)Control engineeringComputer scienceVariable (mathematics)Position (finance)Degree (music)Degrees of freedom (physics and chemistry)

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