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Innovative hand exoskeleton design for extravehicular activities in space

Environmental conditions and pressurized spacesuits expose astronauts to problems of fatigue during lengthy extravehicular activities, with adverse impacts especially on the dexterity, force and endurance of the hands and arms. A state-of-the-art exploration in the field of hand exoskeletons reveale...

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Detalles Bibliográficos
Autores principales: Freni, Pierluigi, Botta, Eleonora Marina, Randazzo, Luca, Ariano, Paolo
Lenguaje:eng
Publicado: Springer 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-03958-9
http://cds.cern.ch/record/1742537
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author Freni, Pierluigi
Botta, Eleonora Marina
Randazzo, Luca
Ariano, Paolo
author_facet Freni, Pierluigi
Botta, Eleonora Marina
Randazzo, Luca
Ariano, Paolo
author_sort Freni, Pierluigi
collection CERN
description Environmental conditions and pressurized spacesuits expose astronauts to problems of fatigue during lengthy extravehicular activities, with adverse impacts especially on the dexterity, force and endurance of the hands and arms. A state-of-the-art exploration in the field of hand exoskeletons revealed that available products are unsuitable for space applications because of their bulkiness and mass. This book proposes a novel approach to the development of hand exoskeletons, based on an innovative soft robotics concept that relies on the exploitation of electroactive polymers operating as sensors and actuators, on a combination of electromyography and mechanomyography for detection of the user’s will and on neural networks for control. The result is a design that should enhance astronauts’ performance during extravehicular activities. In summary, the advantages of the described approach are a low-weight, high-flexibility exoskeleton that allows for dexterity and compliance with the user’s will.
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spelling cern-17425372021-04-21T20:56:54Zdoi:10.1007/978-3-319-03958-9http://cds.cern.ch/record/1742537engFreni, PierluigiBotta, Eleonora MarinaRandazzo, LucaAriano, PaoloInnovative hand exoskeleton design for extravehicular activities in spaceEngineeringEnvironmental conditions and pressurized spacesuits expose astronauts to problems of fatigue during lengthy extravehicular activities, with adverse impacts especially on the dexterity, force and endurance of the hands and arms. A state-of-the-art exploration in the field of hand exoskeletons revealed that available products are unsuitable for space applications because of their bulkiness and mass. This book proposes a novel approach to the development of hand exoskeletons, based on an innovative soft robotics concept that relies on the exploitation of electroactive polymers operating as sensors and actuators, on a combination of electromyography and mechanomyography for detection of the user’s will and on neural networks for control. The result is a design that should enhance astronauts’ performance during extravehicular activities. In summary, the advantages of the described approach are a low-weight, high-flexibility exoskeleton that allows for dexterity and compliance with the user’s will.Springeroai:cds.cern.ch:17425372014
spellingShingle Engineering
Freni, Pierluigi
Botta, Eleonora Marina
Randazzo, Luca
Ariano, Paolo
Innovative hand exoskeleton design for extravehicular activities in space
title Innovative hand exoskeleton design for extravehicular activities in space
title_full Innovative hand exoskeleton design for extravehicular activities in space
title_fullStr Innovative hand exoskeleton design for extravehicular activities in space
title_full_unstemmed Innovative hand exoskeleton design for extravehicular activities in space
title_short Innovative hand exoskeleton design for extravehicular activities in space
title_sort innovative hand exoskeleton design for extravehicular activities in space
topic Engineering
url https://dx.doi.org/10.1007/978-3-319-03958-9
http://cds.cern.ch/record/1742537
work_keys_str_mv AT frenipierluigi innovativehandexoskeletondesignforextravehicularactivitiesinspace
AT bottaeleonoramarina innovativehandexoskeletondesignforextravehicularactivitiesinspace
AT randazzoluca innovativehandexoskeletondesignforextravehicularactivitiesinspace
AT arianopaolo innovativehandexoskeletondesignforextravehicularactivitiesinspace