An Experimental Evaluation of the Proto-MATE: A Novel Ergonomic Upper-Limb Exoskeleton to Reduce Workers' Physical Strain

Wearable passive upper-limb exoskeletons have been proposed and commercialized as tools to improve the ergonomics of workers in repetitive or physically demanding tasks. In the study presented here, an innovative upper-limb exoskeleton is presented, along with experimental tests with human subjects....

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Veröffentlicht in:IEEE robotics & automation magazine 2020-03, Vol.27 (1), p.54-65
Hauptverfasser: Pacifico, Ilaria, Scano, Alessandro, Guanziroli, Eleonora, Moise, Matteo, Morelli, Luca, Chiavenna, Andrea, Romo, Duane, Spada, Stefania, Colombina, Giuseppe, Molteni, Franco, Giovacchini, Francesco, Vitiello, Nicola, Crea, Simona
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Sprache:eng
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Zusammenfassung:Wearable passive upper-limb exoskeletons have been proposed and commercialized as tools to improve the ergonomics of workers in repetitive or physically demanding tasks. In the study presented here, an innovative upper-limb exoskeleton is presented, along with experimental tests with human subjects. The device, called proto-MATE, is characterized by two distinguishing design features: a highly ergonomic human-robot kinematics architecture and bioinspired assistance, created to partially compensate for the user's arm weight. Experimental tests investigated the device's effects on the physical strain of eight upper-limb muscles. These tests also quantified the kinematic coupling between the device and the user by means of specific kinematics-related parameters. The protocol included overhead tasks that are representative of the target application and tasks that generalize nontargeted upperlimb movements and may occur in real working conditions.
ISSN:1070-9932
1558-223X
DOI:10.1109/MRA.2019.2954105