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Coupled elastic actuation development for robots as an intrinsic compromise between performance and safety

Jiun‐Yih Kuan, Han‐Pang Huang, Yen-Tsung Chen

Year
2009
Citations
2

Abstract

Up to now, most of robotic systems, consisting of rigid links, electrical servo actuators, tough covers, high-ratio reduction devices, and position sensors, hardly interact with people and environments under safety constraints or move slowly with careful motion planning results with multiple control strategies. This paper proposes a new actuation approach, coupled elastic actuation (CEA), to provide oncoming robots an intrinsic compromise between performance and safety in unstructured environments. One possible prototype of a 1-DOF coupled elastic actuator with adjustable characteristics adaptive to the applied output force and input force is designed to provide a favorable solution to reach a compromise between performance and safety by a Torque Switch mechanism. Both simulations and experiments are presented to show the desired properties of the CEA systems.

Keywords

ActuatorRobotComputer scienceMechanism (biology)TorqueCompromiseServoControl theory (sociology)ServomotorIntrinsic safety

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