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Electrical Stimulation Control System Design for Upper Limb Rehabilitation - Chris Freeman
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Chris Freeman:

Electrical Stimulation Control System Design for Upper Limb Rehabilitation - novo libro

2015, ISBN: 3319257048

This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with p… mais…

Nr. 69802296. Custos de envio:, 2-5 Werktage, DE. (EUR 0.00)
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Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance - Freeman, Chris
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Freeman, Chris:

Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance - encadernado, livro de bolso

2015, ISBN: 3319257048

1st ed. 2016 Gebundene Ausgabe Biomedizin, Medizin / Biomedizin, Messtechnik, Nachsorge (medizinisch), Rehabilitation, Gesundheitsfachberufe, Biomedizinische Technik, AssistiveTechnolog… mais…

Custos de envio:Versandkostenfrei innerhalb der BRD. (EUR 0.00) MARZIES.de Buch- und Medienhandel, 14621 Schönwalde-Glien
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Freeman, Chris:
Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance - encadernado, livro de bolso

2015

ISBN: 3319257048

[EAN: 9783319257044], Gebraucht, guter Zustand, [SC: 0.0], [PU: Springer International Publishing], REHABILITATION ENGINEERING,ELECTRICAL STIMULATION,ASSISTIVE TECHNOLOGY,REHABILITATION P… mais…

NOT NEW BOOK. Custos de envio:Versandkostenfrei. (EUR 0.00) Buchpark, Trebbin, Germany [83435977] [Rating: 5 (von 5)]
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Freeman, Chris:
Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance 1st ed. 2016 - livro usado

2015, ISBN: 9783319257044

1st ed. 2016 Gepflegter, sauberer Zustand. Außen: Buchschnitt verkürzt. 26180431/12 Versandkostenfreie Lieferung Rehabilitation Engineering,Electrical Stimulation,Assistive Technology,reh… mais…

Custos de envio:Versandkostenfrei innerhalb der BRD. (EUR 0.00) Buchpark GmbH, 14959 Trebbin
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Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance - Freeman, Chris
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Freeman, Chris:
Control System Design for Electrical Stimulation in Upper Limb Rehabilitation Modelling, Identification and Robust Performance - livro usado

2015, ISBN: 9783319257044

[PU: Springer International Publishing], Gepflegter, sauberer Zustand. Außen: Buchschnitt verkürzt. 26180431/12, DE, [SC: 0.00], gebraucht; sehr gut, gewerbliches Angebot, 1st ed. 2016, P… mais…

Custos de envio:Versandkostenfrei, Versand nach Deutschland. (EUR 0.00) Buchpark GmbH

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Control System Design for Electrical Stimulation in Upper Limb Rehabilitation: Modelling, Identification and Robust Performance

This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with physical impairments perform functional upper limb tasks such as eating, grasping and manipulating objects. The book first demonstrates procedures for modelling and identifying biomechanical models of the response of ES, covering a wide variety of aspects including mechanical support structures, kinematics, electrode placement, tasks, and sensor locations. It then goes on to demonstrate how complex functional activities of daily living can be captured in the form of optimisation problems, and extends ES control design to address this case. It then lays out a design methodology, stability conditions, and robust performance criteria that enable control schemes to be developed systematically and transparently, ensuring that they can operate effectively in the presence of realistic modelling uncertainty, physiological variation and measurement noise.

Dados detalhados do livro - Control System Design for Electrical Stimulation in Upper Limb Rehabilitation: Modelling, Identification and Robust Performance


EAN (ISBN-13): 9783319257044
ISBN (ISBN-10): 3319257048
Livro de capa dura
Livro de bolso
Ano de publicação: 29
Editor/Editora: Springer

Livro na base de dados desde 2015-11-28T10:04:11+00:00 (Lisbon)
Página de detalhes modificada pela última vez em 2024-01-27T12:18:54+00:00 (Lisbon)
Número ISBN/EAN: 9783319257044

Número ISBN - Ortografia alternativa:
3-319-25704-8, 978-3-319-25704-4
Ortografia alternativa e termos de pesquisa relacionados:
Autor do livro: chris, freeman
Título do livro: system design, design robust, rehabilitation, modelling control design, chris, freeman, system performance


Dados da editora

Autor: Chris Freeman
Título: Control System Design for Electrical Stimulation in Upper Limb Rehabilitation - Modelling, Identification and Robust Performance
Editora: Springer; Springer International Publishing
176 Páginas
Ano de publicação: 2015-11-04
Cham; CH
Impresso / Feito em
Peso: 4,144 kg
Língua: Inglês
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XIII, 176 p.

BB; Biomedical Engineering and Bioengineering; Hardcover, Softcover / Medizin; Biomedizinische Technik; Verstehen; Assistive Technology; Control Systems; Electrical Stimulation; Iterative Learning Control; Rehabilitation Engineering; rehabilitation psychology; Rehabilitation Medicine; Control and Systems Theory; Biomedical Engineering and Bioengineering; Health Care; Control and Systems Theory; Gesundheitsfachberufe; Regelungstechnik; EA; BC

This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with physical impairments perform functional upper limb tasks such as eating, grasping and manipulating objects.

The book first demonstrates procedures for modelling and identifying biomechanical models of the response of ES, covering a wide variety of aspects including mechanical support structures, kinematics, electrode placement, tasks, and sensor locations. It then goes on to demonstrate how complex functional activities of daily living can be captured in the form of optimisation problems, and extends ES control design to address this case. It then lays out a design methodology, stability conditions, and robust performance criteria that enable control schemes to be developed systematically and transparently, ensuring that they can operate effectively in the presence of realistic modelling uncertainty, physiological variation and measurement noise.

Introduction.-Modelling and Identification.- Combined FES & Robotic Upper Limb Dynamics.- Model Identification.- Feedback Control Design.- Iterative Learning Control Design.- Clinical Application: Multiple Sclerosis.- Constrained ILC for Human Motor Control.- Clinical Application: Goal-orientated Stroke Rehabilitation.- Electrode Array-based Stimulation.- Clinical Application: Fully Functional Stroke Rehabilitation.- Conclusions and Future Research Directions.

This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with physical impairments perform functional upper limb tasks such as eating, grasping and manipulating objects.

The book first demonstrates procedures for modelling and identifying biomechanical models of the response of ES, covering a wide variety of aspects including mechanical support structures, kinematics, electrode placement, tasks, and sensor locations. It then goes on to demonstrate how complex functional activities of daily living can be captured in the form of optimisation problems, and extends ES control design to address this case. It then lays out a design methodology, stability conditions, and robust performance criteria that enable control schemes to be developed systematically and transparently, ensuring that they can operate effectively in the presence of realistic modelling uncertainty, physiological variation and measurement noise.

Brings together principles of modelling, identification, control design and robust performance analysis in one convenient volume

Features illustrative case studies and results from three clinical trials

Demonstrates how theoretical tools can be applied to yield robust performance conditions bounding unmodelled dynamics and user fatigue

Includes supplementary material: sn.pub/extras



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