Industrial Use from Model to the Code
Book Details:
Pages: | 384 |
Published: | Jun 18 2012 |
Posted: | Nov 19 2014 |
Language: | English |
Book format: | PDF |
Book size: | 9.73 MB |
Book Description:
Although formal analysis programming techniques may be quite old, the introduction of formal methods only dates from the 1980s. These techniques enable us to analyze the behavior of a software application, described in a programming language. It took until the end of the 1990s before formal methods or the B method could be implemented in industrial applications or be usable in an industrial setting.Current literature only gives students and researchers very general overviews of formal methods. The purpose of this book is to present feedback from experience on the use of 'formal methods' (such as proof and model-checking) in industrial examples within the transportation domain.This book is based on the experience of people who are currently involved in the creation and evaluation of safety critical system software. The involvement of people from within the industry allows us to avoid the usual problems of confidentiality which could arise and thus enables us to supply new useful information (photos, architecture plans, real examples, etc.).Topics covered by the chapters of this book include SAET-METEOR, the B method and B tools, model-based design using Simulink, the Simulink design verifier proof tool, the implementation and applications of SCADE (Safety Critical Application Development Environment), GATeL: A VV Platform for SCADE models and ControlBuild.Contents1. From Classic Languages to Formal Methods, Jean-Louis Boulanger.2. Formal Method in the Railway Sector #8232;the First Complex Application: SAET-METEOR, Jean-Louis Boulanger.3. The B Method and B Tools, Jean-Louis Boulanger.4. Model-Based Design Using Simulink Modeling, Code Generation, Verification, and Validation, Mirko Conrad and Pieter J. Mosterman.5. Proving Global Properties with the Aid of the SIMULINK DESIGN VERIFIER Proof Tool, Vronique Delebarre and Jean-Frdric Etienne.6. SCADE: Implementation and Applications, Jean-Louis Camus.7. GATeL: A VV Platform for SCADE Models, Bruno Marre, Benjamin Bianc, Patricia Mouy and Christophe Junke.8. ControlBuild, a Development Framework #8232;for Control Engineering, Franck Corbier.9. Conclusion, Jean-Louis Boulanger.
9th International Symposium
The focus in development methodologies of large and complex software systems has switched in the last two decades from functional issues to structural issues; this holds for both the object-oriented and the more recent component-based software engineering paradigms. Formal methods have been applied successfully to the verification of medium-sized programs in protocol and hardware design for quite a long time. However, their application to the development of large systems requires more emphasis on specification, modeling and validation techniques supporting the concepts of reusability and modifiability, and their implementation in new extensions of existing programming languages like Java. This state-of-the-art survey presents the outcome of the 9th S...
3rd Edition
Formal languages, automata, computability, and related matters form the major part of the theory of computation. This textbook is designed for an introductory course for computer science and computer engineering majors who have knowledge of some higher-level programming language....
Advanced Formal Verification shows the latest developments in the verification domain from the perspectives of the user and the developer. World leading experts describe the underlying methods of today's verification tools and describe various scenarios from industrial practice. In the first part of the book the core techniques of today's formal verification tools, such as SAT and BDDs are addressed. In addition, multipliers, which are known to be difficult, are studied. The second part gives insight in professional tools and the underlying methodology, such as property checking and assertion based verification. Finally, analog components have to be considered to cope with complete system on chip designs....
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