会议信息

EDCC 2026: European Dependable Computing Conference

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截稿日期:
2025-09-30
通知日期:
2025-12-12
会议日期:
2026-04-07
会议地点:
Canterbury, UK
届数:
21
QUALIS: b2   浏览: 22146   关注: 1   参加: 0

征稿

EDCC 2026 (European Dependable Computing Conference) is a QUALIS B2 conference held in Canterbury, UK on 2026-04-07. The paper submission deadline is 2025-09-30. Acceptance notifications are sent on 2025-12-12.

Overview We live in turbulent times where technology is ever-changing, and new paradigms continually emerge. Many of them could be game changers from an industrial perspective, like in-memory and quantum computing, or novel artificial intelligence techniques. However, their dependable and secure adoption in computer-based systems we rely on for our everyday lives (from edge devices to large-scale systems) is far from simple. The European Dependable Computing Conference (EDCC) is a pivotal event in the domain of dependable and secure computing systems. It serves as a unique forum for researchers and practitioners to present and discuss their latest research results on theory, techniques, systems, and tools for the design, validation, operation, and evaluation of dependable and secure computing systems. In addition to original research papers, EDCC welcomes contributions on dependability and security in practice, as well as their applications to industrial domains. The conference also serves as a natural meeting place for ongoing dependability and security projects to present their current state of advancement and innovative results. The conference program will be enhanced by workshops, a student forum, fast abstracts, and poster sessions, providing an ideal venue for exchanging ideas and networking. It is anticipated that the conference proceedings will be managed by the Conference Publishing Services (CPS) and submitted to Xplore and the CSDL. Topics The conference covers a broad perspective on dependability and security, which includes, but is not limited to: Hardware and software architecture of dependable systems; Dependability and security modelling, evaluation, benchmarking, and tools; Safety-critical systems design and analysis; Artificial Intelligence for dependability and security; Fault-tolerant networks, protocols and systems; Time-sensitive networks and ultra-reliable low-latency communication; Mixed-criticality systems design and evaluation; Testing and validation methods; Dependability and security of: Artificial Intelligence systems; Distributed and decentralized systems (including blockchains and Web3); Cyber-physical systems, e.g. smart grids, intelligent vehicles, (Industrial) Internet of Things; Cloud, fog, and edge computing systems; Data analytics application; Databases and storage systems; Data protection and data privacy;
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