Human Centered Robot Systems Cognition, Interaction, Technology /

Human Centered Robotic Systems must be able to interact with humans such that the burden of adaptation lies with the machine and not with the human. This book collates a set of prominent papers presented during a two-day conference on "Human Centered Robotic Systems" held on November 19-20...

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Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Ritter, Helge. (Editor), Sagerer, Gerhard. (Editor), Dillmann, R<U+00fc>diger. (Editor), Buss, Martin. (Editor)
Format: Electronic
Language:English
Published: Berlin, Heidelberg : Springer Berlin Heidelberg, 2009.
Series:Cognitive Systems Monographs, 6
Subjects:
Online Access:https://ezaccess.library.uitm.edu.my/login?url=http://dx.doi.org/10.1007/978-3-642-10403-9
Table of Contents:
  • System Integration Supporting Evolutionary Development and Design
  • Direct Control of an Active Tactile Sensor using Echo State Networks
  • Dynamic Potential Fields for Dexterous Tactile Exploration
  • Unlimited Workspace - Coupling a Mobile Haptic Interface with a Mobile Teleoperator
  • An Architecture for Real-Time Control in Multi-Robot Systems
  • Shared-Control Paradigms in Multi-Operator-Single-Robot Teleoperation
  • Assessment of a Tangible User Interface for an Affordable Humanoid Robot
  • A Cognitively Motivated Route-Interface for Mobile Robot Navigation
  • With a Flick of the Eye: Assessing Gaze-Controlled Human-Computer Interaction
  • Integrating Inhomogeneous Processing and Proto-object Formation in a Computational Model of Visual Attention
  • Dimensionality Reduction in HRTF by using Multiway Array Analysis
  • Multimodal Laughter Detection in Natural Discourses
  • Classifier Fusion Applied to Facial Expression Recognition: An Experimental Comparison
  • Impact of Video Source Coding on the Performance of Stereo Matching
  • 3D Action Recognition in an Industrial Environment
  • Investigating Human-Human Approach and Hand-Over
  • Modeling of biomechanical parameters based on LTM structures
  • Towards Meaningful Robot Gesture
  • Virtual Partner for a Haptic Interaction Task
  • Social Motorics <U+0013> Towards an Embodied Basis of Social Human-Robot Interaction
  • Spatio-Temporal Situated Interaction in Ambient Assisted Living.