Human Modeling for Bio Inspired Robotics Book [PDF] Download

Download the fantastic book titled Human Modeling for Bio Inspired Robotics written by Jun Ueda, available in its entirety in both PDF and EPUB formats for online reading. This page includes a concise summary, a preview of the book cover, and detailed information about "Human Modeling for Bio Inspired Robotics", which was released on 02 September 2016. We suggest perusing the summary before initiating your download. This book is a top selection for enthusiasts of the Technology & Engineering genre.

Summary of Human Modeling for Bio Inspired Robotics by Jun Ueda PDF

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


Detail About Human Modeling for Bio Inspired Robotics PDF

  • Author : Jun Ueda
  • Publisher : Academic Press
  • Genre : Technology & Engineering
  • Total Pages : 358 pages
  • ISBN : 0128031522
  • PDF File Size : 13,6 Mb
  • Language : English
  • Rating : 5/5 from 1 reviews

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Human Modeling for Bio-Inspired Robotics

Human Modeling for Bio-Inspired Robotics
  • Publisher : Academic Press
  • File Size : 47,8 Mb
  • Release Date : 02 September 2016
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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

Biologically Inspired Robotics

Biologically Inspired Robotics
  • Publisher : CRC Press
  • File Size : 22,8 Mb
  • Release Date : 19 December 2017
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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

Bio-Inspired Robotics

Bio-Inspired Robotics
  • Publisher : MDPI
  • File Size : 30,6 Mb
  • Release Date : 07 November 2018
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This book is a printed edition of the Special Issue "Bio-Inspired Robotics" that was published in Applied Sciences

Biologically Inspired Robotics

Biologically Inspired Robotics
  • Publisher : Unknown Publisher
  • File Size : 27,5 Mb
  • Release Date : 20 May 2024
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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

Advances in Bio-Inspired Robots

Advances in Bio-Inspired Robots
  • Publisher : Mdpi AG
  • File Size : 37,7 Mb
  • Release Date : 26 November 2021
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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

Bio-Inspired Models of Network, Information, and Computing Systems

Bio-Inspired Models of Network, Information, and Computing Systems
  • Publisher : Springer
  • File Size : 30,6 Mb
  • Release Date : 08 July 2014
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This book constitutes the thoroughly refereed post-conference proceedings of the 7th International Conference on Bio-Inspired Models of Network, Information and Computing Systems (Bionetics 2012), held in Lugano, Switzerland, in December 2012. The 23

Biologically Inspired Control of Humanoid Robot Arms

Biologically Inspired Control of Humanoid Robot Arms
  • Publisher : Springer
  • File Size : 39,8 Mb
  • Release Date : 19 May 2016
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This book investigates a biologically inspired method of robot arm control, developed with the objective of synthesising human-like motion dynamically, using nonlinear, robust and adaptive control techniques in practical robot

Biologically Inspired Intelligent Robots

Biologically Inspired Intelligent Robots
  • Publisher : SPIE Press
  • File Size : 27,9 Mb
  • Release Date : 20 May 2024
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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

Bioinspired Legged Locomotion

Bioinspired Legged Locomotion
  • Publisher : Butterworth-Heinemann
  • File Size : 37,5 Mb
  • Release Date : 21 November 2017
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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