December 16-18, 2015
Singapore
The aim objective of ICCSI 2015 is to present the latest research and results of scientists related to Computer Systems and Instrumentation topics. This conference provides opportunities for the different areas delegates to exchange new ideas and application experiences face to face, to establish business or research relations and to find global partners for future collaboration. We hope that the conference results constituted significant contribution to the knowledge in these up to date scientific field. The organizing committee of conference is pleased to invite prospective authors to submit their original manuscripts to ICCSI 2015.
Systems theory and practice
Systems design methodologies and techniques; Formal methods to specify systems’ behavior; Online and offline systems; Open and closed systems; Centralized and distributed systems; Proactive and reactive systems; System robustness; Systems scalability; Fault-tolerant systems; Feedback systems; High-speed systems; Delay tolerant systems; Real-time systems
Systems engineering
Systems requirements; Systems modeling; Systems development lifecycle; System-of-systems; Systems ergonomics; Subsystem interactions; Systems decomposition; Systems integration
System Instrumentation
Metering embedded sensors; Composing multi-scale measurements; Monitoring instrumentation; Smart sensor-based systems; Calibration and self-calibration systems; Instrumentation for prediction systems
Embedded systems and systems-on-the-chip
Real-time embedded systems Programming embedded systems; Controlling embedded systems; High speed embedded systems; Designing methodologies for embedded systems; Performance on embedded systems; Updating embedded systems; Wireless/wired design of systems-on-the-chip; Testing embedded systems; Technologies for systems processors; Migration to single-chip systems; Micro/nano structures and systems
Target-oriented systems [emulation, simulation, prediction, etc.]
Information systems; Real-time systems; Software systems; Hardware systems; Emulation systems; Simulation systems Prediction systems
Specialized systems [sensor-based, mobile, multimedia, biometrics, etc.]
Sensor-based systems; Biometrics systems; Mobile and fixed systems; Ubiquitous systems; Nano-technology-based systems; Multimedia systemsp>
Validation systems
Diagnosis assistance systems; Test systems; Validation systems; Performance measurement systems; Maintenance systems
Security and protection systems
Security systems; Vulnerability detecting systems; Intrusion detection systems Intrusion avoidance systems; Presence detection systems; Monitoring systems; Management systems; Alert systems; Defense systems; Emergency systems
Advanced systems [expert, tutoring, self-adapting, interactive, etc.]
Expert systems; Tutoring systems; Highly interactive systems; Anticipative systems; On-demand systems; GRID systems; Autonomic systems; Autonomous systems; Self-adapting systems; Adjustable autonomic systems; High performance computing systems; Mission critical systems
Application-oriented systems [content, eHealth, radar, financial, vehicular, etc.]
Web-cashing systems; Content-distributed systems; Accounting and billing systems; E-Health systems; E-Commerce systems; Radar systems; Navigation systems; Systems for measuring physical quantities; Earthquake detection and ranking systems; Financial systems; Robotics systems; Vehicular systems; Entertainment systems; Gaming systems; Speech recognition systemp>
IT Systems
IT service management; IT Infrastructure management; IT service desk; Service support and delivery; Service strategy; Service design; Service transition; Service operation; Continual service improvement
Safety in industrial systems
Fundamentals on system safety; Safety of software systems and software engineering; Safety requirements; Safety for critical systems; Engineering for system robustness and reliability; Control of mission critical systems; Safety-oriented system design; Human tasks and error models; Hazard analysis; Cost and effectiveness of system safety; Verification and validation of safety; Safety tools; Evaluation of safety data, and mitigation and prevention strategies; Safety control and management; System Safety Implementation Guidelines and Standards; Transferring safety knowledge; Metrics for Risk Assessment; Contingency Planning and Occurrence Reporting; Preparedness Activities; Industry specific safety systems (Medical devices, Aerospace, Chemical industry, Nuclear power plants, Public health, Biological Safety)
Complex systems
Theory of complex systems; Ontologies for complex systems; Chaos and complexity; Design and integrate complex systems; Complexity and simulation; Simulation and datamining; Artificial intelligence and soft computing in complex systems; Multi-agent based simulation; Systems of systems; Intelligent agent architectures; Evolutionary programming; Uncertainty reduction and classification; Monitoring and managing complex systems; Case studies of complex systems [vehicular, avionic, health, emergency, sensing, etc.]; Industrial systems [robotics, production, accounting and billing, e-commerce, etc.]
Computer vision and computer graphics
Fundamental algorithms for computer graphics and computer vision: Model representation and simplification; Parametric curves and surfaces; Illumination techniques; Colors and color systems; Virtual and augmented reality, haptic systems;Human-computer interaction; Real time rendering; Image processing, image reconstruction; Pattern recognition; 3D scene reconstruction; Segmentation; Motion detection; Scientific and technical visualization; Medical imaging; Information visualization; 3D TV; Mobile graphics and vision system; Industrial application of computer graphics and vision