Human Harmonized Information Technology Volume 1 Vertical Impact 1st Edition by Toyoaki Nishida – Ebook PDF Instant Download/DeliveryISBN: 4431558675, 9784431558675
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ISBN-10 : 4431558675
ISBN-13 : 9784431558675
Author: Toyoaki Nishida
Going from the philosophy and concepts to the implementation and user study, this book presents an excellent overview of Japan’s contemporary technical challenges in the field of human–computer interaction. The next information era will be one in which information is used to cultivate human and social potential. Driven by this vision, the outcomes provided in this work were accomplished as challenges to establish basic technologies for achieving harmony between human beings and the information environment by integrating element technologies including real-space communication, human interfaces, and media processing. Ranging from the neuro-cognitive level to the field trial, the research activities integrated novel perceptual technologies that even exceed human ability to sense, capture, and affect the real world. This book grew out of one of the CREST research areas funded by the Japan Science and Technology Agency. The theme of the project is “the creation of human-harmonized information technology for convivial society”, where 17 research teams aimed at a common goal. The project promotes a trans-disciplinary approach featuring (1) recognition and comprehension of human behaviors and real-space contexts by utilizing sensor networks and ubiquitous computing, (2) technologies for facilitating man–machine communication by utilizing robots and ubiquitous networks, and (3) content technologies for analyzing, mining, integrating, and structuring multimedia data including those in text, voice, music, and images. This is the first of two volumes, which is contributed by nine team leaders. Besides describing the technical challenges, each contribution lays much weight on discussing the philosophy, concepts, and the implications underlying the project. This work will provide researchers and practitioners in the related areas with an excellent opportunity to find interesting new developments and to think about the relationship between human and information technology.
Human Harmonized Information Technology Volume 1 Vertical Impact 1st Table of contents:
1 Introduction to Human-Harmonized Information Technology
1.1 Prologue
1.2 Changing World
1.3 Toward a Convivial Society
1.3.1 Brightness and Darkness in AI-Supported Society
1.3.2 Transition to a Convivial Society
1.3.3 Human and Social Potential
1.3.4 Roadmap for Enhancing Human and Social Potential
1.4 Human-Harmonized Information Technology
1.4.1 Organization of Research Teams in Research Area
1.4.2 Structured Overview of First Outcome
1.5 Conclusion
References
2 Transmitting Human Presence Through Portable Teleoperated Androids: A Minimal Design Approach
2.1 Introduction
2.2 Presence, sonzai, and sonzaikan
2.2.1 Hypotheses on Recognition and sonzaikan
2.2.2 The Minimum Design Requirements for Providing sonzaikan
2.3 System Development of Sonzaikan Media
2.3.1 Telenoid
2.3.2 Hugvie
2.3.3 Elfoid
2.3.4 Exploration of Human Form from Ancient Human Design
2.4 Technologies Behind sonzaikan Media
2.4.1 Motion Generation Through Speech Information
2.4.2 Motion Generation and Emotional Expression Through Visual Stimuli
2.5 Evaluation of sonzaikan Media
2.5.1 Impact of Physical Embodiment on sonzaikan
2.5.2 Personality Conveyance
2.5.3 Changes in Impression Toward Others
2.5.4 Physiological Measures
2.6 Field Studies with sonzaikan Media
2.6.1 Acceptability from People
2.6.2 Elderly Care with sonzaikan Media
2.6.3 Cultural Differences in Responses Toward Telenoid
2.6.4 Education Support with sonzaikan Media
2.7 Discussion
2.8 Conclusion
References
3 Modeling and Detecting Excessive Trust from Behavior Signals: Overview of Research Project and R
3.1 Overview of Research Project
3.2 Mathematical Modeling of Human Behaviors
3.2.1 Large Scale Behavior Signal Corpora
3.2.2 Mathematical Modeling of Human Behavior
3.2.3 Integrating Visual Behavior into the Mathematical Driver Behavior Model
3.2.4 Analysis of Gaze Behavior in Relation to Environmental Change
3.2.5 Integrated Model of Gaze and Vehicle Operation Behavior
3.3 Cognitive Model of Excessive Trust
3.3.1 Misuse/Disuse of Automated Systems
3.3.2 Measuring Misuse/Disuse
3.4 Study Measuring Overreliance on an Automated Driving System
3.4.1 Definition of Over-Reliance
3.4.2 Experimental Conditions
3.4.3 Estimation of Driver’s Risk Tolerance When Making Decisions
3.4.4 Gaze Behavior During Lane Changes
3.4.5 Detection of Excessive Trust by Analyzing Relationship Between Driver Decision Making and Gaze
3.5 Detecting Excessive Trust in Telephone Fraud Calls
3.6 Conclusion and Details of Ongoing Project
References
4 FoodLog: Multimedia Food Recording Tools for Diverse Applications
4.1 Importance of Food Recording
4.2 Related Works: “Food” Is an Emerging Issue for Information Technology
4.3 FoodLog Web with Image Processing for Food-Balance Estimation
4.4 Image Analysis of FoodLog Web
4.4.1 Overview of Existing System
4.4.2 Improving Estimation by Using Personal Dietary Tendencies
4.5 FoodLog App: Assistance of Food Recording by Image Retrieval
4.6 FoodLog App: Accuracy of Food Image Retrieval
4.7 User Studies of FoodLog App: Is the Image Assistance Beneficial?
4.8 Analysis of FoodLog Data
4.9 Development and Applications
4.10 Conclusion
References
5 Dynamic Information Space Based on High-Speed Sensor Technology
5.1 Introduction
5.2 High-Speed 3-D Vision Toward Insensible Dynamics Sensing
5.3 High-Speed Resistor Network Proximity Sensor Array for Detecting Nearby Object
5.3.1 Sensor Design and Detection Principles
5.3.2 Prototyping and Experiments
5.3.3 Conclusion
5.4 Noncontact Low-Latency Haptic Feedback
5.4.1 Remote Vibrotactile Sensation Produced with Airborne Ultrasound
5.4.2 Multi-unit Phased Array Scheme
5.4.3 Experiments
5.4.4 Conclusion
5.5 High-Speed Display of Visual Information for Information Sharing and Operation in Real Space
5.5.1 High-Frame-Rate LED Display
5.5.2 Smart LED Tile
5.5.3 Aerial Imaging by Retro-Reflection (AIRR)
5.6 Human Perceptual and Motor Functions for Coordinated Interaction with High-Speed Information En
5.6.1 Effective Error Feedback Timing for Visuo-Motor Adaptation
5.6.2 Human Perception for High-Speed Visual Presentation
5.7 Development of the Systems for Dynamic Information Space
5.7.1 High-Speed and Non-contact Interfaces for Human Support
5.7.2 High-Speed Gaze Controller for High-Speed Computer-Human Interaction
5.7.3 Integrated Systems
References
6 Haptic Media: Construction and Utilization of Haptic Virtual Reality and Haptic Telexistence
6.1 Introduction
6.2 Haptic Media Project
6.2.1 Haptic Device Design Based on Haptic Primary Colors
6.2.2 Construction Method for Embodied Haptic Contents
6.2.3 Tangible Visuo-Haptic 3D Display
6.2.4 Construction and Verification of Embodied Tangible 3D System
6.3 Haptic Primary Colors
6.4 Haptic Information Display
6.4.1 Normal/Tangential Force Display: Gravity Grabber
6.4.2 Vibration Sensor and Display: TECHTILE Toolkit
6.4.3 Thermal Sensor and Display
6.5 Telexistence Avatar Robot System: TELESAR V
6.5.1 Development of 53-DOF Human-Size Anthropomorphic Robot
6.5.2 Development of Wide-Angle HD Stereovision System
6.5.3 Development of Thermal and Haptic Transmission System
6.6 RePro3D: Full-Parallax Autostereoscopic 3D Based on Retroreflective Projection Technology (RPT)
6.7 HaptoMIRAGE
6.7.1 Virtual Shutter Glasses Using ARIA (Active-shuttered Real Image Autostereoscopy)
6.7.2 Prototype System
6.8 Summary
References
7 Perceptual Illusion and Development of a Sense-Centered Human Interface
7.1 Introduction
7.2 Haptics and Force
7.3 The System of Sense
7.4 Musculoskeletal Model
7.4.1 Muscle Tension
7.4.2 Joint Torque
7.4.3 Joint Stiffness
7.4.4 Equilibrium Position Change
7.4.5 Uniform Control Hypothesis
7.4.6 Pseudo-haptic in 3D
7.5 Pseudo-haptics by Stiffness
7.5.1 Experimental Protocol
7.5.2 Conditioning Session
7.5.3 Simultaneity Test Session
7.5.4 Weight Perception Test Session
7.5.5 Perceptual Judgment Analysis
7.5.6 Result of Simultaneity
7.5.7 Result of Weight Perception
7.5.8 Relationship Between PSE and PSS
7.5.9 Relationship Between PSE and Estimation of Error in Force Exertion Timing
7.6 Representation of Motion in the Brain
7.7 Applications of a Sense-Centered Human Interface
7.7.1 TCieX
7.7.2 Surgery Robot
7.7.3 Power-Assist Robot
7.8 Conclusion
References
8 Sensing and Controlling Human Gaze in Daily Living Space for Human-Harmonized Information Enviro
8.1 Introduction
8.2 Human Gaze Sensing in Daily-Life Environments
8.2.1 Appearance-Based Gaze Estimation
8.2.2 Calibration-Free Gaze Estimation
8.2.3 Discussion
8.3 Visual Saliency for Subtle Gaze Guidance
8.3.1 Computational Models of Visual Saliency
8.3.2 Saliency-Based Gaze Guidance
8.3.3 Gaze Guidance for Interactive Systems
8.4 Human Gaze Control by Robots
8.4.1 Initiating Interaction from a Robot Based on the Level of Visual Focus of Attention
8.4.2 Design of a Robot Head for Gaze Communication
8.5 Conclusion
References
9 Smart Posterboard: Multi-modal Sensing and Analysis of Poster Conversations
9.1 Introduction
9.2 Overview of System and Corpus
9.2.1 Smart Posterboard System
9.2.2 Multi-modal Corpus of Poster Conversations
9.2.3 Detection of Participants’ Eye-Gaze and Speech
9.3 Prediction of Turn-Taking from Multi-modal Behaviors
9.3.1 Analysis on Eye-Gaze and Backchannel Features in Turn-Taking
9.3.2 Prediction of Turn-Taking by Audience
9.4 Speaker Diarization with Backchannel Detection Using Eye-Gaze Information
9.4.1 Multi-modal Speaker Diarization
9.4.2 Detection of Backchannels
9.5 Detection of Hot Spots via Prominent Reactive Tokens of Audience
9.5.1 Detection of Laughter and Reactive Tokens
9.5.2 Subjective Evaluation of Detected Hot Spots
9.5.3 Prosodic Analysis of Reactive Tokens
9.6 Prediction of Interest and Comprehension Level via Audience’s Questions from Multi-modal Behavio
9.6.1 Definition of Interest and Comprehension Level
9.6.2 Relationship Between Multi-modal Behaviors and Questions
9.6.3 Prediction of Interest and Comprehension Level
9.7 Poster Session Browser
9.8 Conclusions
References
10 Critical Roles of Implicit Interpersonal Information in Communication
10.1 Introduction
10.2 Interpersonal Synchronization as IIPI
10.3 Autism as an Impairment of IIPI
10.3.1 Basic Auditory Processing in ASD
10.3.2 Gaze of ASD
10.4 Future Directions of IIPI Research
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Tags: Human Harmonized, Information Technology, Vertical Impact, Toyoaki Nishida