Bioinspired Template Based Control Of Legged Locomotion
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Bioinspired Legged Locomotion
Author | : Maziar Ahmad Sharbafi,André Seyfarth |
Publsiher | : Butterworth-Heinemann |
Total Pages | : 638 |
Release | : 2017-11-21 |
Genre | : Technology & Engineering |
ISBN | : 9780128037744 |
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Bioinspired Legged Locomotion: Models, Concepts, Control and Applications explores the universe of legged robots, bringing in perspectives from engineering, biology, motion science, and medicine to provide a comprehensive overview of the field. With comprehensive coverage, each chapter brings outlines, and an abstract, introduction, new developments, and a summary. Beginning with bio-inspired locomotion concepts, the book's editors present a thorough review of current literature that is followed by a more detailed view of bouncing, swinging, and balancing, the three fundamental sub functions of locomotion. This part is closed with a presentation of conceptual models for locomotion. Next, the book explores bio-inspired body design, discussing the concepts of motion control, stability, efficiency, and robustness. The morphology of legged robots follows this discussion, including biped and quadruped designs. Finally, a section on high-level control and applications discusses neuromuscular models, closing the book with examples of applications and discussions of performance, efficiency, and robustness. At the end, the editors share their perspective on the future directions of each area, presenting state-of-the-art knowledge on the subject using a structured and consistent approach that will help researchers in both academia and industry formulate a better understanding of bioinspired legged robotic locomotion and quickly apply the concepts in research or products. Presents state-of-the-art control approaches with biological relevance Provides a thorough understanding of the principles of organization of biological locomotion Teaches the organization of complex systems based on low-dimensional motion concepts/control Acts as a guideline reference for future robots/assistive devices with legged architecture Includes a selective bibliography on the most relevant published articles
Assessing Bipedal Locomotion Towards Replicable Benchmarks for Robotic and Robot Assisted Locomotion
Author | : Diego Torricelli,Jan Veneman,Jose Gonzalez-Vargas,Katja Mombaur,C. David Remy |
Publsiher | : Frontiers Media SA |
Total Pages | : 217 |
Release | : 2019-12-24 |
Genre | : Electronic Book |
ISBN | : 9782889632701 |
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Bio Inspired Emergent Control of Locomotion Systems
Author | : Anonim |
Publsiher | : Unknown |
Total Pages | : 135 |
Release | : 2024 |
Genre | : Electronic Book |
ISBN | : 9789814482301 |
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Bio Inspired Locomotion Control of Limbless Robots
Author | : Guoyuan Li,Houxiang Zhang,Jianwei Zhang |
Publsiher | : Springer Nature |
Total Pages | : 185 |
Release | : 2023-01-30 |
Genre | : Technology & Engineering |
ISBN | : 9789811983849 |
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This book presents a bio-inspired hierarchical control scheme step by step toward developing limbless robots capable of 3D locomotion, fast reflex response, as well as sophisticated reaction to environmental stimuli. This interdisciplinary book introduces how to combine biological concept with locomotion control of limbless robots. The special features of the book include limbless locomotion classification and control, design of biological locomotor and the integration of sensory information into the locomotor using artificial intelligence methods, and on-site demonstrations of limbless locomotion in different scenarios. The book is suitable for readers with engineering background, especially for researchers focused on bio-inspired robots.
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.
Bio Inspired Robotics
Author | : Toshio Fukuda,Fei Chen,Qing Shi |
Publsiher | : MDPI |
Total Pages | : 555 |
Release | : 2018-11-07 |
Genre | : Electronic books |
ISBN | : 9783038970453 |
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This book is a printed edition of the Special Issue "Bio-Inspired Robotics" that was published in Applied Sciences
Neurobiology of Motor Control
Author | : Scott L. Hooper,Ansgar Büschges |
Publsiher | : John Wiley & Sons |
Total Pages | : 512 |
Release | : 2017-06-21 |
Genre | : Medical |
ISBN | : 9781118873625 |
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A multi-disciplinary look at the current state of knowledge regarding motor control and movement—from molecular biology to robotics The last two decades have seen a dramatic increase in the number of sophisticated tools and methodologies for exploring motor control and movement. Multi-unit recordings, molecular neurogenetics, computer simulation, and new scientific approaches for studying how muscles and body anatomy transform motor neuron activity into movement have helped revolutionize the field. Neurobiology of Motor Control brings together contributions from an interdisciplinary group of experts to provide a review of the current state of knowledge about the initiation and execution of movement, as well as the latest methods and tools for investigating them. The book ranges from the findings of basic scientists studying model organisms such as mollusks and Drosophila, to biomedical researchers investigating vertebrate motor production to neuroengineers working to develop robotic and smart prostheses technologies. Following foundational chapters on current molecular biological techniques, neuronal ensemble recording, and computer simulation, it explores a broad range of related topics, including the evolution of motor systems, directed targeted movements, plasticity and learning, and robotics. Explores motor control and movement in a wide variety of organisms, from simple invertebrates to human beings Offers concise summaries of motor control systems across a variety of animals and movement types Explores an array of tools and methodologies, including electrophysiological techniques, neurogenic and molecular techniques, large ensemble recordings, and computational methods Considers unresolved questions and how current scientific advances may be used to solve them going forward Written specifically to encourage interdisciplinary understanding and collaboration, and offering the most wide-ranging, timely, and comprehensive look at the science of motor control and movement currently available, Neurobiology of Motor Control is a must-read for all who study movement production and the neurobiological basis of movement—from molecular biologists to roboticists.
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.