ter Beek / Nickovic / Nickovic | Formal Methods for Industrial Critical Systems | E-Book | sack.de
E-Book

E-Book, Englisch, 289 Seiten, eBook

Reihe: Programming and Software Engineering

ter Beek / Nickovic / Nickovic Formal Methods for Industrial Critical Systems

25th International Conference, FMICS 2020, Vienna, Austria, September 2–3, 2020, Proceedings

E-Book, Englisch, 289 Seiten, eBook

Reihe: Programming and Software Engineering

ISBN: 978-3-030-58298-2
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark



This book constitutes the proceedings of the 25th International Workshop on Formal Methods for Industrial Critical Systems, FMICS 2020, which was held during September 2-3, 2020. The conference was planned to take place in Vienna, Austria. Due to the COVID-19 pandemic it changed to a virtual event.
The 11 full papers presented in this volume were carefully reviewed and selected from 26 submissions. The papers are organized in topical sections as follows: Quantitative Analysis and Cyber-Physical Systems, Formal Verification of Industrial Systems, Temporal Logic and Model Checking.
The book also contains a lengthy report on a Formal Methods Survey conducted on occasion of the 25th edition of the conference.
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Weitere Infos & Material


FMICS 25th Anniversary.- The 2020 Expert Survey on Formal Methods.- Quantitative Analysis and Cyber-Physical Systems.- Verifiable and Scalable Mission-Plan Synthesis for Autonomous Agents.- Skylines for Symbolic Energy Consumption Analysis.- Formally Verified Timing Computation for Non-deterministic Horizontal Turns During Aircraft Collision Avoidance Maneuvers.- An Actor-based Approach for Security Analysis of Cyber-Physical Systems.- Formal Verification of Industrial Systems Scalable Detection of Ampli cation Timing Anomalies for the Superscalar TriCore Architecture.- A Formally Veri ed Plasma Vertical Position Control Algorithm.- The First Twenty-Five Years of Industrial Use of the B-Method.- A Safety Flasher Developed with the CLEARSY Safety Platform.- Temporal Logic and Model checking.- Formal Verification of OIL Component Specifications Using mCRL2.- Temporal-Logic Query Checking over Finite Data Streams.- Verification of a Failure Management Protocol for Stateful IoT Applications.


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