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Conceptual design of a novel variable stiffness actuator for use in lower limb exoskeletons

Tomislav Baček, Ramazan Ünal, Marta Moltedo, Karen Junius, Heidi Cuypers, Bram Vanderborght, Dirk Lefeber

发表年份
2015
引用次数
22

摘要

A novel modular variable stiffness actuator (VSA), for use in the knee joint of lower limb exoskeletons, is presented. The actuator consists of a combination of a spindle-driven MACCEPA (Mechanically Adjustable Compliance and Controllable Equilibrium Position Actuator) and a spring acting in parallel, (dis)engaged by means of a simple on/off mechanism depending on the phase of the gait cycle. Such design approach is inspired by two clearly distinctive gait phases of a knee joint, one with a high velocity and low torque, and another one with low velocity and high torque profiles. By tackling each of these two phases separately, energy consumption and torque requirements of an active part of the actuator have been decreased, while keeping the size and the weight of the actuator at a reasonable size for use in wearable robots (WR).

关键词

ExoskeletonActuatorTorqueControl theory (sociology)Wearable computerModular designStiffnessRobotRotary actuatorGait cycle

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