Home /Research /CRUX: A compliant robotic upper-extremity exosuit for lightweight, portable, multi-joint muscular augmentation
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CRUX: A compliant robotic upper-extremity exosuit for lightweight, portable, multi-joint muscular augmentation

Steven Lessard, Pattawong Pansodtee, Ash Robbins, Leya Breanna Baltaxe-Admony, James M. Trombadore, Mircea Teodorescu, Adrian Agogino, Sri Kurniawan

Year
2017
Citations
52

Abstract

Wearable robots can potentially offer their users enhanced stability and strength. These augmentations are ideally designed to actuate harmoniously with the user's movements and provide extra force as needed. The creation of such robots, however, is particularly challenging due to the underlying complexity of the human body. In this paper, we present a compliant, robotic exosuit for upper extremities called CRUX. This exosuit, inspired by tensegrity models of the human arm, features a lightweight (1.3 kg), flexible multi-joint design for portable augmentation. We also illustrate how CRUX maintains the full range of motion of the upper-extremities for its users while providing multi-DoF strength amplification to the major muscles of the arm, as evident by tracking the heart rate of an individual exercising said arm. Exosuits such as CRUX may be useful in physical therapy and in extreme environments where users are expected to exert their bodies to the fullest extent.

Keywords

Powered exoskeletonWearable computerExoskeletonComputer scienceRobotHuman–computer interactionSimulationArtificial intelligenceEmbedded system

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