Software Reliability Engineering 2006 Issre 06 17th International Symposium On
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ISSRE 2006
Author | : |
Publisher | : IEEE |
Total Pages | : 396 |
Release | : 2006 |
Genre | : Computers |
ISBN | : 9780769526843 |
Software Engineering Perspectives and Application in Intelligent Systems
Author | : Radek Silhavy |
Publisher | : Springer |
Total Pages | : 477 |
Release | : 2016-04-26 |
Genre | : Technology & Engineering |
ISBN | : 3319336223 |
The volume Software Engineering Perspectives and Application in Intelligent Systems presents new approaches and methods to real-world problems, and in particular, exploratory research that describes novel approaches in the field of Software Engineering. Particular emphasis is laid on modern trends in selected fields of interest. New algorithms or methods in a variety of fields are also presented. The 5th Computer Science On-line Conference (CSOC 2016) is intended to provide an international forum for discussions on the latest research results in all areas related to Computer Science. The addressed topics are the theoretical aspects and applications of Computer Science, Artificial Intelligences, Cybernetics, Automation Control Theory and Software Engineering.
Software Reliability Engineering (ISSRE 2002), 13th International Symposium on IEEEComputer Society
Author | : IEEE COMPUTER SOCIETY PRESS |
Publisher | : IEEE |
Total Pages | : 500 |
Release | : 2002-11-01 |
Genre | : Computers |
ISBN | : 9780769517643 |
Computer, Network, Software, and Hardware Engineering with Applications
Author | : Norman F. Schneidewind |
Publisher | : John Wiley & Sons |
Total Pages | : 608 |
Release | : 2012-03-27 |
Genre | : Computers |
ISBN | : 1118037456 |
There are many books on computers, networks, and software engineering but none that integrate the three with applications. Integration is important because, increasingly, software dominates the performance, reliability, maintainability, and availability of complex computer and systems. Books on software engineering typically portray software as if it exists in a vacuum with no relationship to the wider system. This is wrong because a system is more than software. It is comprised of people, organizations, processes, hardware, and software. All of these components must be considered in an integrative fashion when designing systems. On the other hand, books on computers and networks do not demonstrate a deep understanding of the intricacies of developing software. In this book you will learn, for example, how to quantitatively analyze the performance, reliability, maintainability, and availability of computers, networks, and software in relation to the total system. Furthermore, you will learn how to evaluate and mitigate the risk of deploying integrated systems. You will learn how to apply many models dealing with the optimization of systems. Numerous quantitative examples are provided to help you understand and interpret model results. This book can be used as a first year graduate course in computer, network, and software engineering; as an on-the-job reference for computer, network, and software engineers; and as a reference for these disciplines.
UML-Based Software Product Line Engineering with SMarty
Author | : Edson OliveiraJr |
Publisher | : Springer Nature |
Total Pages | : 517 |
Release | : 2023-03-10 |
Genre | : Computers |
ISBN | : 3031185560 |
This book is about software product lines (SPLs) designed and developed taking UML diagrams as the primary basis, modeled according to a rigorous approach composed of an UML profile and a systematic process for variability management activities, forming the Stereotype-based Management of Variability (SMarty) approach. The book consists of five parts. Part I provides essential concepts on SPL in terms of the first development methodologies. It also introduces variability concepts and discusses SPL architectures finishing with the SMarty approach. Part II is focused on the design, verification and validation of SMarty SPLs, and Part III concentrates on the SPL architecture evolution based on ISO/IEC metrics, the SystEM-PLA method, optimization with the MOA4PLA method, and feature interaction prevention. Next, Part IV presents SMarty as a basis for SPL development, such as, the M-SPLearning SPL for mobile learning applications, the PLeTs SPL for testing tools, the PlugSPL plugin environment for supporting the SPL life cycle, the SyMPLES approach for designing embedded systems with SysML, the SMartySPEM approach for software process lines (SPrL), and re-engineering of class diagrams into an SPL. Eventually, Part V promotes controlled experimentation in UML-based SPLs, presenting essential concepts on how to plan, conduct, and document experiments, as well as showing several experiments carried out with SMarty. This book aims at lecturers, graduate students and experienced practitioners. Lecturers might use the book for graduate level courses about SPL fundamentals and tools; students will learn about the SPL engineering process, variability management, and mass customization; and practitioners will see how to plan the transition from single-product development to an SPL-based process, how to document inherent variability in a given domain, or how to apply controlled experiments to SPLs.