Biomechanics and Robotics

Biomechanics and Robotics
Title Biomechanics and Robotics PDF eBook
Author Marko B. Popovic
Publisher CRC Press
Pages 337
Release 2013-12-21
Genre Medical
ISBN 1482242737

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The science and technology of biomechanics and robotics promise to be some of the most influential research directions of the twenty-first century. Biomechanics and Robotics goes beyond the individual areas of biomechanics, robotics, biomedical engineering, biomechatronics, and biologically inspired robotics to provide the first unified textbook on

Biomechanics of Movement

Biomechanics of Movement
Title Biomechanics of Movement PDF eBook
Author Thomas K. Uchida
Publisher MIT Press
Pages 396
Release 2021-01-12
Genre Technology & Engineering
ISBN 0262359197

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An engaging introduction to human and animal movement seen through the lens of mechanics. How do Olympic sprinters run so fast? Why do astronauts adopt a bounding gait on the moon? How do running shoes improve performance while preventing injuries? This engaging and generously illustrated book answers these questions by examining human and animal movement through the lens of mechanics. The authors present simple conceptual models to study walking and running and apply mechanical principles to a range of interesting examples. They explore the biology of how movement is produced, examining the structure of a muscle down to its microscopic force-generating motors. Drawing on their deep expertise, the authors describe how to create simulations that provide insight into muscle coordination during walking and running, suggest treatments to improve function following injury, and help design devices that enhance human performance.

Human Robotics

Human Robotics
Title Human Robotics PDF eBook
Author Etienne Burdet
Publisher MIT Press
Pages 291
Release 2013-09-13
Genre Science
ISBN 0262314827

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A synthesis of biomechanics and neural control that draws on recent advances in robotics to address control problems solved by the human sensorimotor system. This book proposes a transdisciplinary approach to investigating human motor control that synthesizes musculoskeletal biomechanics and neural control. The authors argue that this integrated approach—which uses the framework of robotics to understand sensorimotor control problems—offers a more complete and accurate description than either a purely neural computational approach or a purely biomechanical one. The authors offer an account of motor control in which explanatory models are based on experimental evidence using mathematical approaches reminiscent of physics. These computational models yield algorithms for motor control that may be used as tools to investigate or treat diseases of the sensorimotor system and to guide the development of algorithms and hardware that can be incorporated into products designed to assist with the tasks of daily living. The authors focus on the insights their approach offers in understanding how movement of the arm is controlled and how the control adapts to changing environments. The book begins with muscle mechanics and control, progresses in a logical manner to planning and behavior, and describes applications in neurorehabilitation and robotics. The material is self-contained, and accessible to researchers and professionals in a range of fields, including psychology, kinesiology, neurology, computer science, and robotics.

Fast Motions in Biomechanics and Robotics

Fast Motions in Biomechanics and Robotics
Title Fast Motions in Biomechanics and Robotics PDF eBook
Author Moritz Diehl
Publisher Springer
Pages 449
Release 2007-07-13
Genre Technology & Engineering
ISBN 3540361197

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In the past decades, much progress has been made in the field of walking robots. The current state of technology makes it possible to create humanoid robots that nearly walk like a human being, climb stairs, or avoid small - stacles. However, the dream of a robot running as fast and as elegantly as a human is still far from becoming reality. Control of such fast motions is still a big technological issue in robotics, and the maximum running speed of contemporary robots is still much smaller than that of human track runners. The conventional control approach that most of these robots are based on does not seem to be suitable to increase the running speeds up to a biological level. In order to address this challenge, we invited an interdisciplinary community of researchers from robotics, biomechanics, control engineering and applied mathematics to come together in Heidelberg at the Symposium “Fast Motions in Biomechanics and Robotics – Optimization & Feedback Control” which was held at the International Science Forum (IWH) on September 7–9, 2005. The number of participants in this symposium was kept small in order to promote discussions and enable a fruitful exchange of ideas.

Modern Robotics

Modern Robotics
Title Modern Robotics PDF eBook
Author Kevin M. Lynch
Publisher Cambridge University Press
Pages 545
Release 2017-05-25
Genre Computers
ISBN 1107156300

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A modern and unified treatment of the mechanics, planning, and control of robots, suitable for a first course in robotics.

Advances in Mechatronics and Biomechanics towards Efficient Robot Actuation

Advances in Mechatronics and Biomechanics towards Efficient Robot Actuation
Title Advances in Mechatronics and Biomechanics towards Efficient Robot Actuation PDF eBook
Author Jörn Malzahn
Publisher Frontiers Media SA
Pages 195
Release 2019-06-28
Genre
ISBN 288945911X

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Introduction to the Mechanics of Space Robots

Introduction to the Mechanics of Space Robots
Title Introduction to the Mechanics of Space Robots PDF eBook
Author Giancarlo Genta
Publisher Springer Science & Business Media
Pages 613
Release 2011-10-27
Genre Science
ISBN 9400717962

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Based on lecture notes on a space robotics course, this book offers a pedagogical introduction to the mechanics of space robots. After presenting an overview of the environments and conditions space robots have to work in, the author discusses a variety of manipulatory devices robots may use to perform their tasks. This is followed by a discussion of robot mobility in these environments and the various technical approaches. The last two chapters are dedicated to actuators, sensors and power systems used in space robots. This book fills a gap in the space technology literature and will be useful for students and for those who have an interest in the broad and highly interdisciplinary field of space robotics, and in particular in its mechanical aspects.