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活动简介

Self-adaptation and self-management are key requirements in many modern and emerging software systems, including the industrial internet of things, cyber-physical systems, cloud computing, and mobile computing. These systems must be able to adapt themselves at run time to preserve their operation in the presence of uncertain changes in their operating environment, resource variability, new user needs, intrusions, and faults. Solutions to complement software systems with self-managing and self-adaptive capabilities have been proposed by researchers from different areas including software architecture, fault-tolerant computing, programming languages, robotics, and run time program analysis and verification. Additionally, solutions have been proposed in related areas like biologically-inspired computing, artificial intelligence, machine learning, control systems, and agent-based systems.

The SEAMS symposium focuses on applying software engineering to these solutions, including methods, techniques, and tools that can be used to support self-* properties like self-adaptation, self-management, self-healing, self-optimization, and self-configuration.

The objective of SEAMS is to bring together researchers and practitioners from many of these diverse areas to investigate, discuss, and examine thoroughly the fundamental principles, state of the art, and critical challenges of engineering self-adaptive and self-managing systems.

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The SERENE 2016 workshop provides a forum for researchers and practitioners to exchange ideas on advances in all areas relevant to software engineering for resilient systems, including, but not limited to:

  • Development of resilient systems
  • Incremental development processes for resilient systems;
  • Requirements engineering & re-engineering for resilience;
  • Frameworks, patterns and software architectures for resilience;
  • Engineering of self-healing autonomic systems;
  • Design of trustworthy and intrusion-safe systems;
  • Resilience at run-time (mechanisms, reasoning and adaptation).
  • Resilience & dependability (resilience vs. robustness, dependable vs. adaptive systems)
  • Verification, validation and evaluation of resilience
  • Modelling and model based analysis of resilience properties;
  • Formal and semi-formal techniques for verification and validation;
  • Experimental evaluations of resilient systems;
  • Quantitative approaches to ensuring resilience;
  • Resilience prediction.
  • Case studies & applications
  • Empirical studies in the domain of resilient systems;
  • Methodologies adopted in industrial contexts;
  • Cloud computing and resilient service provisioning;
  • Resilience for data-driven systems (e.g., big data-based adaption and resilience);
  • Resilient cyber-physical systems and infrastructures;
  • Global aspects of resilience engineering: education, training and cooperation.
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重要日期
  • 会议日期

    05月16日

    2016

    05月17日

    2016

  • 05月17日 2016

    注册截止日期

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