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Computer Science - Software Engineering | NASA Formal Methods - 6th International Symposium, NFM 2014, Houston, TX, USA, April 29 - May

NASA Formal Methods

6th International Symposium, NFM 2014, Houston, TX, USA, April 29 - May 1, 2014. Proceedings

Badger, Julia M., Rozier, Kristin Yvonne (Eds.)

2014, XXVI, 360 p. 114 illus.

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This book constitutes the refereed proceedings of the 6th International Symposium on NASA Formal Methods, NFM 2014, held in Houston, TX, USA, April 29 – May 1, 2014. The 20 revised regular papers presented together with 9 short papers were carefully reviewed and selected from 107 submissions. The topics include model checking, theorem proving, static analysis, model-based development, runtime monitoring, formal approaches to fault tolerance, applications of formal methods to aerospace systems, formal analysis of cyber-physical systems, including hybrid and embedded systems, formal methods in systems engineering, modeling, requirements and specifications, requirements generation, specification debugging, formal validation of specifications, use of formal methods in safety cases, use of formal methods in human-machine interaction analysis, formal methods for parallel hardware implementations, use of formal methods in automated software engineering and testing, correct-by-design, design for verification, and property based design techniques, techniques and algorithms for scaling formal methods, e.g., abstraction and symbolic methods, compositional techniques, parallel and distributed techniques, and application of formal methods to emerging technologies.

Content Level » Research

Keywords » embeded systems - formal methods - formal verification - gene regulation networks - java - model checking - real-time systems - simulation - software engineering - static analysis - theorem proving

Related subjects » Software Engineering - Theoretical Computer Science

Table of contents 

Model checking.- Theorem proving.- Static analysis.- Model-based development.- Runtime monitoring.- Formal approaches to fault tolerance.- Applications of formal methods to aerospace systems.- Formal analysis of cyber-physical systems, including hybrid and embedded systems.- Formal methods in systems engineering.- Modeling.- Requirements and specifications.- Requirements generation.- Specification debugging.- Formal validation of specifications.- Use of formal methods in safety cases.- Use of formal methods in human-machine interaction analysis.- Formal methods for parallel hardware implementations.- Use of formal methods in automated software engineering and testing.- Correct-by-design.- Design for verification, and property based design techniques.- Techniques and algorithms for scaling formal methods, e.g., abstraction and symbolic methods.- Compositional techniques.- Parallel and distributed techniques.- Application of formal methods to emerging technologies.

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