| Humanoid Robotics | |
| Time-Varying Affective Response for Humanoid Robots | p. 1 |
| The Co-simulation of Humanoid Robot Based on Solidworks, ADAMS and Simulink | p. 10 |
| From RoboNova to HUBO: Platforms for Robot Dance | p. 19 |
| Bunny Bot: Humanoid Platform for Research and Teaching | p. 25 |
| Teen Sized Humanoid Robot: Archie | p. 34 |
| Interdisciplinary Construction and Implementation of a Human Sized Humanoid Robot by Master Students | p. 42 |
| Human Robot Interaction | |
| Safety Aspects in a Human-Robot Interaction Scenario: A Human Worker Is Co-operating with an Industrial Robot | p. 53 |
| Integration of a RFID System in a Social Robot | p. 63 |
| A Practical Study on the Design of a User-Interface Robot Application | p. 74 |
| Infrared Remote Control with a Social Robot | p. 86 |
| BlogRobot: Mobile Terminal for Blog Browse Using Physical Representation | p. 96 |
| An Exploratory Investigation into the Effects of Adaptation in Child-Robot Interaction | p. 102 |
| Devious Chatbots-Interactive Malware with a Plot | p. 110 |
| Towards Better Human Robot Interaction: Understand Human Computer Interaction in Social Gaming Using a Video-Enhanced-Diary Method | p. 119 |
| Promotion of Efficient Cooperation by Shaving Environment with an Agent Having a Body in Real World | p. 128 |
| Interaction Design for a Pet-Like Remote Control | p. 134 |
| Experiences with a Barista Robot, PusionBot | p. 140 |
| Mutually Augmented Cognition | p. 152 |
| How Humans Optimize Their Interaction with the Environment: The Impact of Action Context on Human Perception | p. 162 |
| Development of a Virtual Presence Sharing System Using a Telework Chair | p. 173 |
| PLEXIL-DL: Language and Runtime for Context-Aware Robot Behaviour | p. 179 |
| Ambient Intelligence in a Smart Home for Energy Efficiency and Eldercare | p. 187 |
| Education and Entertainment | |
| Intelligent Technologies for Edutainment Using Multiple Robots | p. 195 |
| Remote Education Based on Robot Edutainment | p. 204 |
| Not Just "Teaching Robotics" but "Teaching through Robotics" | p. 214 |
| A Proposal of Autonomous Robotic Systems Educative Environment | p. 224 |
| Mechatronics Education: From Paper Design to Product Prototype Using LEGO NXT Parts | p. 232 |
| Fostering Development of Students' Collective and Self-efficacy in Robotics Projects | p. 240 |
| From an Idea to a Working Robot Prototype: Distributing Knowledge of Robotics through Science Museum Workshops | p. 248 |
| Teaching Electronics through Constructing Sensors and Operating Robots | p. 255 |
| Learning from Analogies between Robotic World and Natural Phenomena | p. 262 |
| Integrating Robot Design Competitions into the Curriculum and K-12 Outreach Activities | p. 271 |
| Teamwork and Robot Competitions in the Undergraduate Program at the Copenhagen University College of Engineering | p. 279 |
| Cooperative Robotics | |
| Multiagents System with Dynamic Box Change for MiroSot | p. 287 |
| Multi Block Localization of Multiple Robots | p. 293 |
| Soty-Segment: Robust Color Patch Design to Lighting Condition Variation | p. 300 |
| Task-Based Flocking Algorithm for Mobile Robot Cooperation | p. 310 |
| Analysis of Spatially Limited Local Communication for Multi-Robot Foraging | p. 322 |
| AMiRESot-A New Robot Soccer League with Autonomous Miniature Robots | p. 332 |
| Robotic System Design | |
| BeBot: A Modular Mobile Miniature Robot Platform Supporting Hardware Reconfiguration and Multi-standard Communication | p. 346 |
| System Design for Semi-automatic AndroSot | p. 357 |
| Learning, Optimization, Communication | |
| Extended TA Algorithm for adapting a Situation Ontology | p. 364 |
| An Integer-Coded Chaotic Particle Swarm Optimization for Traveling Salesman Problem | p. 372 |
| USAR Robot Communication Using ZigBee Technology | p. 380 |
| Author Index | p. 391 |
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