IRC 2019 - Third IEEE International Conference on Robotic Computing
Date2019-02-25 - 2019-02-27
Deadline2018-10-12
VenueNaples, Italy
Keywords
Websitehttps://irc.asia.edu.tw/2019
Topics/Call fo Papers
The boundaries between Computer Science, Artificial Intelligence, and Robotics are continuing to be softened. On one hand computers are continuing to be humanized and a large number of cyber-physical systems are being developed to act upon the physical world. On the other hand the robotic community is looking into the robots of the 21st century that are versatile computing machines with high social impact potential, such as enhance transportation safety, reduce agricultural pesticide use, and improve public safety and crime-fighting efficacy, among other things. The barriers that restrain their diffusion significantly correlate to the complexity of developing their software control systems, which must be reliable, maintainable, intelligent, and safe.
Robotic Computing (RC) addresses the synergetic interaction of computing technologies and robotic technologies. The synergy between Robotics, Artificial Intelligence, and Computer Science is both realistic and strategic. Their mutual benefit is to make it possible to build and evolve new robotic systems, to reduce their development cost, and to enhance their quality.
The Third IEEE International Conference on Robotic Computing (IRC 2019, aka Robotic Computing 2019) is inviting high quality research papers addressing the synergies between Computer Science, Artificial Intelligence, and Robotics in all applications:
Topics related to Computer Science
Formal methods for analysis and design
Software architectures
Middleware infrastructures
Model-driven engineering
Component-based engineering
Software product line engineering
Data, ontology, and knowledge engineering
Autonomic computing
Service oriented computing
Cloud computing
Multimedia computing
Internet of Things
Virtual reality
Computer security
Topics related to Artificial Intelligence
Natural language understanding
Machine learning
Reasoning
Multi agent system
Context and intention awareness
Affective computing
Conversational computing
Planning
Problem solving
Semantic computing
Knowledge representation
Human computer interaction
Topics related to Robotics
RAMS abilities of robotic systems
Hardware modeling and abstraction
Resource awareness
Sensor fusion, integration
Place recognition, localization
Object recognition, tracking
Scene interpretation
Robot cognition
Manipulation, grasping
Robot kinematics, dynamics
Motion planning, control
Navigation
Task planning, monitoring
Human-robot Interaction
Robot simulation
Multi-robot systems
Robotic Computing (RC) addresses the synergetic interaction of computing technologies and robotic technologies. The synergy between Robotics, Artificial Intelligence, and Computer Science is both realistic and strategic. Their mutual benefit is to make it possible to build and evolve new robotic systems, to reduce their development cost, and to enhance their quality.
The Third IEEE International Conference on Robotic Computing (IRC 2019, aka Robotic Computing 2019) is inviting high quality research papers addressing the synergies between Computer Science, Artificial Intelligence, and Robotics in all applications:
Topics related to Computer Science
Formal methods for analysis and design
Software architectures
Middleware infrastructures
Model-driven engineering
Component-based engineering
Software product line engineering
Data, ontology, and knowledge engineering
Autonomic computing
Service oriented computing
Cloud computing
Multimedia computing
Internet of Things
Virtual reality
Computer security
Topics related to Artificial Intelligence
Natural language understanding
Machine learning
Reasoning
Multi agent system
Context and intention awareness
Affective computing
Conversational computing
Planning
Problem solving
Semantic computing
Knowledge representation
Human computer interaction
Topics related to Robotics
RAMS abilities of robotic systems
Hardware modeling and abstraction
Resource awareness
Sensor fusion, integration
Place recognition, localization
Object recognition, tracking
Scene interpretation
Robot cognition
Manipulation, grasping
Robot kinematics, dynamics
Motion planning, control
Navigation
Task planning, monitoring
Human-robot Interaction
Robot simulation
Multi-robot systems
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Last modified: 2018-06-03 17:30:06