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Biologically Inspired Robotics


Biologically 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.



Bilbiq A Biologically Inspired Robot With Walking And Rolling Locomotion


Bilbiq A Biologically Inspired Robot With Walking And Rolling Locomotion
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Author : Ralf Simon King
language : en
Publisher: Springer Science & Business Media
Release Date : 2012-11-06

Bilbiq A Biologically Inspired Robot With Walking And Rolling Locomotion written by Ralf Simon King 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 2012-11-06 with Technology & Engineering categories.


The book ‘BiLBIQ: A biologically inspired Robot with walking and rolling locomotion’ deals with implementing a locomotion behavior observed in the biological archetype Cebrennus villosus to a robot prototype whose structural design needs to be developed. The biological sample is investigated as far as possible and compared to other evolutional solutions within the framework of nature’s inventions. Current achievements in robotics are examined and evaluated for their relation and relevance to the robot prototype in question. An overview of what is state of the art in actuation ensures the choice of the hardware available and most suitable for this project. Through a constant consideration of the achievement of two fundamentally different ways of locomotion with one and the same structure, a robot design is developed and constructed taking hardware constraints into account. The development of a special leg structure that needs to resemble and replace body elements of the biological archetype is a special challenge to be dealt with. Finally a robot prototype was achieved, which is able to walk and roll - inspired by the spider Cebrennus villosus.



Biologically Inspired Robotics


Biologically Inspired Robotics
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Author : Yunhui Liu
language : en
Publisher:
Release Date : 2017

Biologically Inspired Robotics written by Yunhui Liu and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with 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 in th.



Biologically Inspired Robotics


Biologically Inspired Robotics
DOWNLOAD
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.



Biologically Inspired Intelligent Robots


Biologically Inspired Intelligent Robots
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Author : Yoseph Bar-Cohen
language : en
Publisher: SPIE Press
Release Date : 2003

Biologically Inspired Intelligent Robots written by Yoseph Bar-Cohen and has been published by SPIE Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2003 with Computers categories.


The multidisciplinary issues involved in the development of biologically inspired intelligent robots include materials, actuators, sensors, structures, functionality, control, intelligence, and autonomy. This book reviews various aspects ranging from the biological model to the vision for the future.



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



Biologically Inspired Robot Behavior Engineering


Biologically Inspired Robot Behavior Engineering
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Author : Richard J. Duro
language : en
Publisher: Springer Science & Business Media
Release Date : 2003

Biologically Inspired Robot Behavior Engineering written by Richard J. Duro 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 2003 with Computers categories.


The book presents an overview of current research on biologically inspired autonomous robotics from the perspective of some of the most relevant researchers in this area. The book crosses several boundaries in the field of robotics and the closely related field of artificial life. The key aim throughout the book is to obtain autonomy at different levels. From the basic motor behavior in some exotic robot architectures right through to the planning of complex behaviors or the evolution of robot control structures, the book explores different degrees and definitions of autonomous behavior. These behaviors are supported by a wide variety of modeling techniques: structural grammars, neural networks, and fuzzy logic and evolution underlies many of the development processes. Thus this text can be used by scientists and students interested in these areas and provides a general view of the field for a more general audience.



Biologically Inspired Robots


Biologically Inspired Robots
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Author : Shigeo Hirose
language : en
Publisher:
Release Date : 1993

Biologically Inspired Robots written by Shigeo Hirose and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1993 with Science categories.


Living systems often exhibit a fascinating repertoire of phenomena that inspire new engineering solutions to old problems. This book is an account of the author's investigations of the locomotion of snakes and the application of his findings to a new class of robots displaying snake-like motions. The author expertly presents the case that robots in which whole mechanisms move have many potential applications that should be fully exploited in the future when the pertinent technological developments have been achieved. This unique work will be interesting to both robotics engineers and zoologists.



Bio Inspired Robotics


Bio Inspired Robotics
DOWNLOAD
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.




Biologically Inspired Approaches For Locomotion Anomaly Detection And Reconfiguration For Walking Robots


Biologically Inspired Approaches For Locomotion Anomaly Detection And Reconfiguration For Walking Robots
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Author : Bojan Jakimovski
language : en
Publisher: Springer Science & Business Media
Release Date : 2011-08-20

Biologically Inspired Approaches For Locomotion Anomaly Detection And Reconfiguration For Walking Robots written by Bojan Jakimovski 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 2011-08-20 with Technology & Engineering categories.


The increasing presence of mobile robots in our everyday lives introduces the requirements for their intelligent and autonomous features. Therefore the next generation of mobile robots should be more self-capable, in respect to: increasing of their functionality in unforeseen situations, decreasing of the human involvement in their everyday operations and their maintenance; being robust; fault tolerant and reliable in their operation. Although mobile robotic systems have been a topic of research for decades and aside the technology improvements nowadays, the subject on how to program and making them more autonomous in their operations is still an open field for research. Applying bio-inspired, organic approaches in robotics domain is one of the methodologies that are considered that would help on making the robots more autonomous and self-capable, i.e. having properties such as: self-reconfiguration, self-adaptation, self-optimization, etc. In this book several novel biologically inspired approaches for walking robots (multi-legged and humanoid) domain are introduced and elaborated. They are related to self-organized and self-stabilized robot walking, anomaly detection within robot systems using self-adaptation, and mitigating the faulty robot conditions by self-reconfiguration of a multi-legged walking robot. The approaches presented have been practically evaluated in various test scenarios, the results from the experiments are discussed in details and their practical usefulness is validated.