Novel Bioinspired Actuator Designs for Robotics

Novel Bioinspired Actuator Designs for Robotics
Author: Philipp Beckerle,Maziar Ahmad Sharbafi,Tom Verstraten,Peter P. Pott,André Seyfarth
Publsiher: Springer Nature
Total Pages: 122
Release: 2021-09-04
Genre: Technology & Engineering
ISBN: 9783030408862

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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.

Bioinspired Sensing Actuation and Control in Underwater Soft Robotic Systems

Bioinspired Sensing  Actuation  and Control in Underwater Soft Robotic Systems
Author: Derek A. Paley,Norman M. Wereley
Publsiher: Springer Nature
Total Pages: 301
Release: 2020-11-06
Genre: Technology & Engineering
ISBN: 9783030504762

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This book includes representative research from the state‐of‐the‐art in the emerging field of soft robotics, with a special focus on bioinspired soft robotics for underwater applications. Topics include novel materials, sensors, actuators, and system design for distributed estimation and control of soft robotic appendages inspired by the octopus and seastar. It summarizes the latest findings in an emerging field of bioinspired soft robotics for the underwater domain, primarily drawing from (but not limited to) an ongoing research program in bioinspired autonomous systems sponsored by the Office of Naval Research. The program has stimulated cross‐disciplinary research in biology, material science, computational mechanics, and systems and control for the purpose of creating novel robotic appendages for maritime applications. The book collects recent results in this area.

Bioinspired Actuators and Sensors

Bioinspired Actuators and Sensors
Author: Minoru Taya,Makoto Mizunami,Shûhei Nomura
Publsiher: Unknown
Total Pages: 135
Release: 2016
Genre: HEALTH & FITNESS
ISBN: 1316574903

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From experts in engineering and biology, this is the first book to integrate sensor and actuator technology with bioinspired design.

Bioinspired Actuators and Sensors

Bioinspired Actuators and Sensors
Author: Minoru Taya,Elizabeth Van Volkenburgh,Makoto Mizunami,Shûhei Nomura
Publsiher: Unknown
Total Pages: 536
Release: 2015
Genre: HEALTH & FITNESS
ISBN: 1107588278

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From experts in engineering and biology, this is the first book to integrate sensor and actuator technology with bioinspired design.

Bioinspired Design and Control of Robots with Intrinsic Compliance

Bioinspired Design and Control of Robots with Intrinsic Compliance
Author: Yongping Pan,Zhao Guo,Dongbing Gu
Publsiher: Frontiers Media SA
Total Pages: 132
Release: 2020-12-04
Genre: Science
ISBN: 9782889661572

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This eBook is a collection of articles from a Frontiers Research Topic. Frontiers Research Topics are very popular trademarks of the Frontiers Journals Series: they are collections of at least ten articles, all centered on a particular subject. With their unique mix of varied contributions from Original Research to Review Articles, Frontiers Research Topics unify the most influential researchers, the latest key findings and historical advances in a hot research area! Find out more on how to host your own Frontiers Research Topic or contribute to one as an author by contacting the Frontiers Editorial Office: frontiersin.org/about/contact.

Cellular Actuators

Cellular Actuators
Author: Jun Ueda,Joshua A Schultz,Harry Asada
Publsiher: Butterworth-Heinemann
Total Pages: 382
Release: 2017-01-24
Genre: Computers
ISBN: 9780128037065

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Cellular Actuators: Modularity and Variability in Muscle-Inspired Actuation describes the roles actuators play in robotics and their insufficiency in emerging new robotic applications, such as wearable devices and human co-working robots where compactness and compliance are important. Piezoelectric actuators, the topic of this book, provide advantages like displacement scale, force, reliability, and compactness, and rely on material properties to provide displacement and force as reactions to electric stimulation. The authors, renowned researchers in the area, present the fundamentals of muscle-like movement and a system-wide study that includes the design, analysis, and control of biologically inspired actuators. This book is the perfect guide for researchers and practitioners who would like to deploy this technology into their research and products. Introduces Piezoelectric Actuators concepts in a system wide integrated approach Acts as a single source for the design, analysis, and control of actuator arrays Presents applications to illustrate concepts and the potential of the technology Details the physical assembly possibilities of Piezo actuators Presents fundamentals of bio inspired actuation Introduces the concept of cellular actuators

Design and Control of Intelligent Robotic Systems

Design and Control of Intelligent Robotic Systems
Author: Dikai Liu,Lingfeng Wang,Kay Chen Tan
Publsiher: Springer
Total Pages: 478
Release: 2009-01-22
Genre: Technology & Engineering
ISBN: 9783540899334

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With the increasing applications of intelligent robotic systems in various ?elds, the - sign and control of these systems have increasingly attracted interest from researchers. This edited book entitled “Design and Control of Intelligent Robotic Systems” in the book series of “Studies in Computational Intelligence” is a collection of some advanced research on design and control of intelligent robots. The works presented range in scope from design methodologies to robot development. Various design approaches and al- rithms, such as evolutionary computation, neural networks, fuzzy logic, learning, etc. are included. We also would like to mention that most studies reported in this book have been implemented in physical systems. An overview on the applications of computational intelligence in bio-inspired robotics is given in Chapter 1 by M. Begum and F. Karray, with highlights of the recent progress in bio-inspired robotics research and a focus on the usage of computational intelligence tools to design human-like cognitive abilities in the robotic systems. In Chapter 2, Lisa L. Grant and Ganesh K. Venayagamoorthy present greedy search, particle swarm optimization and fuzzy logic based strategies for navigating a swarm of robots for target search in a hazardous environment, with potential applications in high-risk tasks such as disaster recovery and hazardous material detection.

Wearable Robots

Wearable Robots
Author: José L. Pons
Publsiher: John Wiley & Sons
Total Pages: 358
Release: 2008-04-15
Genre: Technology & Engineering
ISBN: 9780470987650

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A wearable robot is a mechatronic system that is designed around the shape and function of the human body, with segments and joints corresponding to those of the person it is externally coupled with. Teleoperation and power amplification were the first applications, but after recent technological advances the range of application fields has widened. Increasing recognition from the scientific community means that this technology is now employed in telemanipulation, man-amplification, neuromotor control research and rehabilitation, and to assist with impaired human motor control. Logical in structure and original in its global orientation, this volume gives a full overview of wearable robotics, providing the reader with a complete understanding of the key applications and technologies suitable for its development. The main topics are demonstrated through two detailed case studies; one on a lower limb active orthosis for a human leg, and one on a wearable robot that suppresses upper limb tremor. These examples highlight the difficulties and potentialities in this area of technology, illustrating how design decisions should be made based on these. As well as discussing the cognitive interaction between human and robot, this comprehensive text also covers: the mechanics of the wearable robot and it’s biomechanical interaction with the user, including state-of-the-art technologies that enable sensory and motor interaction between human (biological) and wearable artificial (mechatronic) systems; the basis for bioinspiration and biomimetism, general rules for the development of biologically-inspired designs, and how these could serve recursively as biological models to explain biological systems; the study on the development of networks for wearable robotics. Wearable Robotics: Biomechatronic Exoskeletons will appeal to lecturers, senior undergraduate students, postgraduates and other researchers of medical, electrical and bio engineering who are interested in the area of assistive robotics. Active system developers in this sector of the engineering industry will also find it an informative and welcome resource.