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Bio Inspired Robotics


Bio Inspired Robotics
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Biologically Inspired Robotics


Biologically Inspired Robotics
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Author : Yunhui Liu
language : en
Publisher: CRC Press
Release Date : 2017-12-19

Biologically Inspired Robotics written by Yunhui Liu and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-12-19 with Medical categories.


Robotic engineering inspired by biology—biomimetics—has many potential applications: robot snakes can be used for rescue operations in disasters, snake-like endoscopes can be used in medical diagnosis, and artificial muscles can replace damaged muscles to recover the motor functions of human limbs. Conversely, the application of robotics technology to our understanding of biological systems and behaviors—biorobotic modeling and analysis—provides unique research opportunities: robotic manipulation technology with optical tweezers can be used to study the cell mechanics of human red blood cells, a surface electromyography sensing system can help us identify the relation between muscle forces and hand movements, and mathematical models of brain circuitry may help us understand how the cerebellum achieves movement control. Biologically Inspired Robotics contains cutting-edge material—considerably expanded and with additional analysis—from the 2009 IEEE International Conference on Robotics and Biomimetics (ROBIO). These 16 chapters cover both biomimetics and biorobotic modeling/analysis, taking readers through an exploration of biologically inspired robot design and control, micro/nano bio-robotic systems, biological measurement and actuation, and applications of robotics technology to biological problems. Contributors examine a wide range of topics, including: A method for controlling the motion of a robotic snake The design of a bionic fitness cycle inspired by the jaguar The use of autonomous robotic fish to detect pollution A noninvasive brain-activity scanning method using a hybrid sensor A rehabilitation system for recovering motor function in human hands after injury Human-like robotic eye and head movements in human–machine interactions A state-of-the-art resource for graduate students and researchers.



Bio Inspired Robotics


Bio Inspired Robotics
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Author : Toshio Fukuda
language : en
Publisher: MDPI
Release Date : 2018-11-07

Bio Inspired Robotics written by Toshio Fukuda and has been published by MDPI this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-11-07 with Technology & Engineering categories.


This book is a printed edition of the Special Issue "Bio-Inspired Robotics" that was published in Applied Sciences



Bio Inspired Robotics


Bio Inspired Robotics
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Author : Toshio Fukuda
language : en
Publisher:
Release Date : 2018

Bio Inspired Robotics written by Toshio Fukuda and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with categories.




Advances In Bio Inspired Robots


Advances In Bio Inspired Robots
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Author : Taewon Seo
language : en
Publisher: Mdpi AG
Release Date : 2021-11-26

Advances In Bio Inspired Robots written by Taewon Seo and has been published by Mdpi AG this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-11-26 with Technology & Engineering categories.


This book covers three major topics, specifically Biomimetic Robot Design, Mechanical System Design from Bio-Inspiration, and Bio-Inspired Analysis on A Mechanical System. The Biomimetic Robot Design part introduces research on flexible jumping robots, snake robots, and small flying robots, while the Mechanical System Design from Bio-Inspiration part introduces Bioinspired Divide-and-Conquer Design Methodology, Modular Cable-Driven Human-Like Robotic Arm andWall-Climbing Robot. Finally, in the Bio-Inspired Analysis on A Mechanical System part, research contents on the control strategy of Surgical Assistant Robot, modeling of Underwater Thruster, and optimization of Humanoid Robot are introduced.



Multi Locomotion Robotic Systems


Multi Locomotion Robotic Systems
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Author : Toshio Fukuda
language : en
Publisher: Springer
Release Date : 2012-06-15

Multi Locomotion Robotic Systems written by Toshio Fukuda and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-06-15 with Technology & Engineering categories.


Nowadays, multiple attention have been paid on a robot working in the human living environment, such as in the field of medical, welfare, entertainment and so on. Various types of researches are being conducted actively in a variety of fields such as artificial intelligence, cognitive engineering, sensor- technology, interfaces and motion control. In the future, it is expected to realize super high functional human-like robot by integrating technologies in various fields including these types of researches. The book represents new developments and advances in the field of bio-inspired robotics research introducing the state of the art, the idea of multi-locomotion robotic system to implement the diversity of animal motion. It covers theoretical and computational aspects of Passive Dynamic Autonomous Control (PDAC), robot motion control, multi legged walking and climbing as well as brachiation focusing concrete robot systems, components and applications. In addition, gorilla type robot systems are described as hardware of Multi-Locomotion Robotic system. It is useful for students and researchers in the field of robotics in general, bio-inspired robots, multi-modal locomotion, legged walking, motion control, and humanoid robots. Furthermore, it is also of interest for lecturers and engineers in practice building systems cooperating with humans.



Special Issue On Focused Areas And Future Trends Of Bio Inspired Robots Analysis Control And Design For Bio Inspired Robotics


Special Issue On Focused Areas And Future Trends Of Bio Inspired Robots Analysis Control And Design For Bio Inspired Robotics
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Author :
language : en
Publisher:
Release Date : 2012

Special Issue On Focused Areas And Future Trends Of Bio Inspired Robots Analysis Control And Design For Bio Inspired Robotics written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with categories.




Bio Inspired Robotics


Bio Inspired Robotics
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Author : Darren Richer
language : en
Publisher: Discovery Publishing House (India)
Release Date : 2025

Bio Inspired Robotics written by Darren Richer and has been published by Discovery Publishing House (India) this book supported file pdf, txt, epub, kindle and other format this book has been release on 2025 with Fiction categories.


The book Bio-Inspired Robotics takes readers on a fascinating journey, unraveling the intricate relationship between biology and robotics. It investigates the field where the principles governing living organisms serve as a wellspring for creating machines with unparalleled efficiency and adaptability. The pages of this volume invite readers to join an expedition that reveals the secrets of nature's design, leveraging its wisdom to push the boundaries of robotics. In the initial chapters, the groundwork is laid by focusing on the biological foundations inspiring robotic design. Biomechanics and behavioral patterns of living organisms become the cornerstone for developing robots that mirror nature's elegance. From the efficient locomotion of insects to the problem-solving capabilities of primates, these chapters establish the biological foundation upon which subsequent robotics advancements are built. Further, application-focused chapters showcase the real-world impact of Bio-Inspired Robotics. From medical robots emulating a surgeon's precision to autonomous drones inspired by the flight patterns of birds, the potential applications span diverse fields such as healthcare, environmental monitoring, and disaster response. These applications extend beyond mere mimicry, aiming to address complex problems and contribute meaningfully to various domains. The collaborative efforts of biologists, engineers, and computer scientists have paved the way for transformative technologies that promise to reshape the future. The book serves as a guide for both novices and experts through the enthralling landscapes of Bio-Inspired Robotics, inspiring new ideas, and fostering a deeper appreciation for the synergy between nature and technology.



Bio Inspired Self Organizing Robotic Systems


Bio Inspired Self Organizing Robotic Systems
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Author : Yan Meng
language : en
Publisher: Springer Science & Business Media
Release Date : 2011-05-08

Bio Inspired Self Organizing Robotic Systems written by Yan Meng and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-05-08 with Computers categories.


Self-organizing approaches inspired from biological systems, such as social insects, genetic, molecular and cellular systems under morphogenesis, and human mental development, has enjoyed great success in advanced robotic systems that need to work in dynamic and changing environments. Compared with classical control methods for robotic systems, the major advantages of bio-inspired self-organizing robotic systems include robustness, self-repair and self-healing in the presence of system failures and/or malfunctions, high adaptability to environmental changes, and autonomous self-organization and self-reconfiguration without a centralized control. “Bio-inspired Self-organizing Robotic Systems” provides a valuable reference for scientists, practitioners and research students working on developing control algorithms for self-organizing engineered collective systems, such as swarm robotic systems, self-reconfigurable modular robots, smart material based robotic devices, unmanned aerial vehicles, and satellite constellations.



Human Modeling For Bio Inspired Robotics


Human Modeling For Bio Inspired Robotics
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Author : Jun Ueda
language : en
Publisher: Academic Press
Release Date : 2016-09-02

Human Modeling For Bio Inspired Robotics written by Jun Ueda and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-09-02 with Technology & Engineering categories.


Human Modelling for Bio-inspired Robotics: Mechanical Engineering in Assistive Technologies presents the most cutting-edge research outcomes in the area of mechanical and control aspects of human functions for macro-scale (human size) applications. Intended to provide researchers both in academia and industry with key content on which to base their developments, this book is organized and written by senior experts in their fields. Human Modeling for Bio-Inspired Robotics: Mechanical Engineering in Assistive Technologies offers a system-level investigation into human mechanisms that inspire the development of assistive technologies and humanoid robotics, including topics in modelling of anatomical, musculoskeletal, neural and cognitive systems, as well as motor skills, adaptation and integration. Each chapter is written by a subject expert and discusses its background, research challenges, key outcomes, application, and future trends. This book will be especially useful for academic and industry researchers in this exciting field, as well as graduate-level students to bring them up to speed with the latest technology in mechanical design and control aspects of the area. Previous knowledge of the fundamentals of kinematics, dynamics, control, and signal processing is assumed. - Presents the most recent research outcomes in the area of mechanical and control aspects of human functions for macro-scale (human size) applications - Covers background information and fundamental concepts of human modelling - Includes modelling of anatomical, musculoskeletal, neural and cognitive systems, as well as motor skills, adaptation, integration, and safety issues - Assumes previous knowledge of the fundamentals of kinematics, dynamics, control, and signal processing



Bio Inspired Artificial Intelligence


Bio Inspired Artificial Intelligence
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Author : Dario Floreano
language : en
Publisher: MIT Press
Release Date : 2008-08-22

Bio Inspired Artificial Intelligence written by Dario Floreano and has been published by MIT Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008-08-22 with Computers categories.


A comprehensive introduction to new approaches in artificial intelligence and robotics that are inspired by self-organizing biological processes and structures. New approaches to artificial intelligence spring from the idea that intelligence emerges as much from cells, bodies, and societies as it does from evolution, development, and learning. Traditionally, artificial intelligence has been concerned with reproducing the abilities of human brains; newer approaches take inspiration from a wider range of biological structures that that are capable of autonomous self-organization. Examples of these new approaches include evolutionary computation and evolutionary electronics, artificial neural networks, immune systems, biorobotics, and swarm intelligence—to mention only a few. This book offers a comprehensive introduction to the emerging field of biologically inspired artificial intelligence that can be used as an upper-level text or as a reference for researchers. Each chapter presents computational approaches inspired by a different biological system; each begins with background information about the biological system and then proceeds to develop computational models that make use of biological concepts. The chapters cover evolutionary computation and electronics; cellular systems; neural systems, including neuromorphic engineering; developmental systems; immune systems; behavioral systems—including several approaches to robotics, including behavior-based, bio-mimetic, epigenetic, and evolutionary robots; and collective systems, including swarm robotics as well as cooperative and competitive co-evolving systems. Chapters end with a concluding overview and suggested reading.