Soft Computing in Advanced Robotics by Yong-Tae KimSoft Computing in Advanced Robotics by Yong-Tae Kim

Soft Computing in Advanced Robotics

byYong-Tae KimEditorIchiro Kobayashi, Euntai Kim

Paperback | March 19, 2014

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Intelligent system and robotics are inevitably bound up; intelligent robots makes embodiment of system integration by using the intelligent systems. We can figure out that intelligent systems are to cell units, while intelligent robots are to body components. The two technologies have been synchronized in progress. Making leverage of the robotics and intelligent systems, applications cover boundlessly the range from our daily life to space station; manufacturing, healthcare, environment, energy, education, personal assistance, logistics. This book aims at presenting the research results in relevance with intelligent robotics technology. We propose to researchers and practitioners some methods to advance the intelligent systems and apply them to advanced robotics technology. This book consists of 10 contributions that feature mobile robots, robot emotion, electric power steering, multi-agent, fuzzy visual navigation, adaptive network-based fuzzy inference system, swarm EKF localization and inspection robot. This edition is published in original, peer reviewed contributions covering from initial design to final prototypes and authorization.

Title:Soft Computing in Advanced RoboticsFormat:PaperbackDimensions:115 pagesPublished:March 19, 2014Publisher:Springer-Verlag/Sci-Tech/TradeLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:3319055720

ISBN - 13:9783319055725

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Table of Contents

Network-Based Subsumption Architecture for Broadcast Control of Multiple Mobile Robots Based on a Poor Hardware/Software Platform.- Expressions of Emotions of Koala Robot Based on Laban Movement Analysis.- Development of Electric Power Steering.- Speed Compensator for Unmanned Ground Vehicle Using Piece-Wised Control.- Vibration Minimization of Tower Typed 2-Wheeled Mobile Robot Using Acceleration and Deceleration Velocity Profile Method.- Fuzzy Visual Navigation Method for Autonomous Freight Transportation Robot.- Design of Adaptive Network-based Fuzzy Inference System for Obstacle Avoidance of Mobile Robot.- Swarm EKF Localization for a Multiple Robot System with Range-Only Measurements.- Inspection Robot for Parallel Entry Boiler Header Pipe.