Engineering Trustworthy Software Systems

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First International School, SETSS 2014, Chongqing, China, September 8-13,2014. Tutorial Lectures, Lecture Notes in Computer Science 9506 – Programming and Software Engineering

ISBN: 3319296272
ISBN 13: 9783319296272
Herausgeber: Zhiming Liu/Zili Zhang
Verlag: Springer Verlag GmbH
Umfang: xi, 325 S., 141 farbige Illustr., 325 p. 141 illus. in color.
Erscheinungsdatum: 01.03.2016
Auflage: 1/2016
Produktform: Kartoniert
Einband: Kartoniert

The courses of SETSS 2014 aim to improve the understanding of the relation between theory and practice in software engineering, to contribute to narrowing the gap between them. This volume contains the lecture notes of the five courses and materials of one seminar. The common themes of the courses include the design and use of theories, techniques and tools for software specification and modeling, analysis and verification. The courses cover sequential programming, component- and object software, hybrid systems and cyber-physical systems with challenges of termination, security, safety, security, fault-tolerance and real-time requirements. The techniques include model checking, correctness by construction through refinement and model transformations, synthesis and computer algebra.

Artikelnummer: 8963439 Kategorie:

Beschreibung

This volume contains the lecture notes of the five courses and one seminar given at the School on Engineering Trustworthy Software Systems (SETSS 2014), held in September 2014 at Southwest University in Chongqing, China. The material is useful for postgraduate students, researchers, academics and industrial engineers who are interested in the theory and practice of methods and tools for the design and programming of trustworthy software systems. The common themes of the courses include the design and use of theories, techniques and tools for software specification and modeling, analysis and verification. The courses cover sequential programming, component and object software, hybrid systems and cyberphysical systems with challenges of termination, security, safety, security, fault-tolerance and realtime requirements. The techniques include model checking, correctness by construction through refinement and model transformations, synthesis and computer algebra.

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