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Titlebook: Novel Bioinspired Actuator Designs for Robotics; Philipp Beckerle,Maziar Ahmad Sharbafi,André Seyfa Book 2021 Springer Nature Switzerland

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發(fā)表于 2025-3-21 19:23:19 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Novel Bioinspired Actuator Designs for Robotics
編輯Philipp Beckerle,Maziar Ahmad Sharbafi,André Seyfa
視頻videohttp://file.papertrans.cn/669/668362/668362.mp4
概述Assesses biological actuation and control in the human motor system to inspire the development of robotic actuators.Presents actuator design and control concepts including multiple degree of freedom,
叢書名稱Studies in Computational Intelligence
圖書封面Titlebook: Novel Bioinspired Actuator Designs for Robotics;  Philipp Beckerle,Maziar Ahmad Sharbafi,André Seyfa Book 2021 Springer Nature Switzerland
描述.This book discusses biologically inspired robotic actuators designed to offer improved robot performance and approaching human-like efficiency and versatility. It assesses biological actuation and control in the human motor system, presents a range of technical actuation approaches, and discusses potential applications in wearable robots, i.e., powered prostheses and exoskeletons..Gathering the findings of internationally respected researchers from various fields, the book provides a uniquely broad perspective on bioinspired actuator designs for robotics. Its scope includes fundamental aspects of biomechanics and neuromechanics, actuator and control design, and their application in (wearable) robotics. The book offers PhD students and advanced graduate students an essential introduction to the field, while providing researchers a cutting-edge research perspective..
出版日期Book 2021
關(guān)鍵詞Neuromechanics; Biological Actuation; Impedance Actuator; Artificial Muscles; Biomimetic Actuator; Compli
版次1
doihttps://doi.org/10.1007/978-3-030-40886-2
isbn_ebook978-3-030-40886-2Series ISSN 1860-949X Series E-ISSN 1860-9503
issn_series 1860-949X
copyrightSpringer Nature Switzerland AG 2021
The information of publication is updating

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Template-Based Approach to Resolve Redundancies in Motor ControlBiological actuators can be recruited to match the requirements of different motor tasks and conditions. In this chapter, we discuss how redundancies in motor control could be resolved following a template-based approach. We explore the recruitment of sensory pathways using the concepts of graphical sensor motor maps and locomotor subfunctions.
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ConsiderationsSummarizing and discussing the contents of the previous chapters, we provide biological, engineering, bioinspiration, and application considerations of bioinspired actuators for robotics.
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Philipp Beckerle,Maziar Ahmad Sharbafi,André SeyfaAssesses biological actuation and control in the human motor system to inspire the development of robotic actuators.Presents actuator design and control concepts including multiple degree of freedom,
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