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  • 1.
    Bucchiarone, A.
    et al.
    Motivational Digital Systems, Fondazione Bruno Kessler, Trento, Italy.
    Ciccozzi, Federico
    Mälardalens högskola, Akademin för innovation, design och teknik, Inbyggda system.
    Lambers, L.
    System Analysis and Modeling Group, University of Potsdam, Potsdam, Germany.
    Pierantonio, A.
    Universita Degli Studi dell'Aquila, L'Aquila, Italy.
    Tichy, M.
    Ulm University, Ulm, Germany.
    Tisi, M.
    Computer Science, Institut Mines-Telecom Atlantique, Nantes, France.
    Wortmann, A.
    RWTH Aachen University, Aachen, Germany.
    Zaytsev, V.
    University of Twente, Enschede, Netherlands.
    What Is the Future of Modeling?2021Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 38, nr 2, s. 119-127, artikel-id 9354405Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Modeling languages and frameworks have been the key technology for advancing model-driven engineering (MDE) methods and tools. Many industrial and research tools have been realized and are used across many domains. Hence, we think it is the right time to define what should be the future of modeling technologies, especially the requirements for the next generation of modeling frameworks and languages.

  • 2.
    Crnkovic, Ivica
    et al.
    Mälardalens högskola, Akademin för innovation, design och teknik.
    Stafford, Judith
    Tufts Univ, USA.
    Szyperski, Clemens
    Microsoft Corp.
    Software Components beyond Programming: From Routines to Services2011Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 28, nr 3, s. 22-26Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Software engineering (SE) conference in 1968, Doug Mc Ilroy introduced the concept of software components during his keynote speech, "Mass-Produced Software Components." That components hold such an esteemed place in SE history should come as no surprise: componentization is a fundamental engineering principle. Top-down approaches decompose large systems into smaller parts-components and bottom-up approaches compose smaller parts components into larger systems. Since 1968, components have played a role in both SE research and practice. For example, components have been an immanent part of software architecture from its early days.2 In 1998, the In ternational Conference on Software Engineering introduced component based software engineering (CBSE) as a specific area within SE at the first workshop on CBSE.

  • 3.
    Eldh, Sigrid
    Mälardalens universitet, Akademin för innovation, design och teknik, Inbyggda system. Carleton Univ, Ottawa, ON, Canada..
    A 40-Year Impact Perspective: Meet Your New Editor in Chief2024Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 41, nr 1, s. 4-7Artikel i tidskrift (Övrigt vetenskapligt)
    Abstract [en]

    Forty years since IEEE Software Magazine began, its impact is shown today. We must constantly ask ourselves if we are building the product right and if are we building the right products, as new ways of developing software challenges both research and industry.

  • 4.
    Eldh, Sigrid
    Mälardalens universitet, Akademin för innovation, design och teknik, Inbyggda system. Ericsson AB, Stockholm, Sweden;Carleton Univ, Ottawa, ON, Canada..
    Generative AI Is Changing How and What We Learn2024Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 41, nr 2, s. 4-5Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    This issue is tackling the Future of Software Engineering Education and Training in the Age of AI. Generative AI tools will change how we learn. A new, more precise language is needed to communicate better with AI tools. Learn prompt engineering!- Sigrid Eldh, EIC IEEE Software.

  • 5.
    Gallina, Barbara
    et al.
    Mälardalens universitet, Akademin för innovation, design och teknik, Inbyggda system.
    Montecchi, Leonardo
    Norwegian Univ Sci & Technol, N-7034 Trondheim, Norway.
    de Oliveira, Andre Luiz
    Univ Fed Juiz de Fora, BR-36033270 Juiz De Fora, MG, Brazil.
    Bressan, Lucas
    Univ Fed Juiz de Fora, BR-36033270 Juiz De Fora, MG, Brazil.
    Multiconcern, Dependability-Centered Assurance Via a Qualitative and Quantitative Coanalysis2022Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 39, nr 4, s. 39-47Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    To contribute to multiconcern assurance, we focus on system design and present a high-level process that builds on top of the synergy between qualitative and quantitative dependability analysis techniques, which have been used for mono- as well as multiconcern analysis.

  • 6.
    Gorschek, Tony
    et al.
    Blekinge Institute of Technology.
    Garre, Per
    Sony Ericcson Mobile Communications.
    Larsson, Stig
    ABB Corporate Research.
    Wohlin, Claes
    Blekinge Institute of Technology.
    A Model for Technology Transfer in Practice2006Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 23, nr 6, s. 88-95Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Technology transfer, and thus industry-relevant research, involves more than merely producing research results and delivering them in publications and technical reports. It demands close cooperation and collaboration between industry and academia throughout the entire research process. During research conducted in a partnership between Blekinge Institute of Technology and two companies, Danaher Motion Saro AB (DHR) and ABB, we devised a technology transfer model that embodies this philosophy. We initiated this partnership to conduct industry-relevant research in requirements engineering and product management. Technology transfer in this context is a prerequisite: it validates academic research results in a real setting, and it provides a way to improve industry development and business processes.

  • 7.
    Graydon, Patrick
    et al.
    University of York, United Kingdom.
    Habli, Ibrahim
    University of York, United Kingdom.
    Hawkins, Richard
    University of York, United Kingdom.
    Kelly, Tim
    University of York, United Kingdom.
    Knight, John
    University of Virginia, United States .
    Arguing Conformance2012Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 29, nr 3, s. 50-57Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Conformance to software standards plays an essential role in establishing confidence in high-integrity software systems. However, standards conformance suffers from uncertainty about its meaning for three reasons: because requirements of the standard must be interpreted to fit the specifics of the application; because standards can deliberately leave options for developers; and because goal-based software standards exist that simply specify the high-level principles of software assurance without prescribing a specific means of compliance. The overall effect of these issues is that when conformance to a software assurance standard is claimed, there can be a lack of clarity as to exactly what the claim entails. This article draws on principles and practice from the domain of safety argument construction to describe the use of explicit and structured conformance arguments to help address this problem.

  • 8.
    Kienle, Holger
    Mälardalens högskola, Akademin för innovation, design och teknik.
    Tools of the Trade It's About Time to Take Java Script (More) Seriously2010Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 27, nr 3, s. 60-62Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    JavaScript is a scripting language, of course. The drawbacks and benefits of scripting languages compared to full-fledged programming languages have been explored before. In a previous installment of this column, Diomidis Spinellis points out that with scripting languages, users can benefit from flexible syntax, loose type systems, powerful reflection mechanisms, and shorter build cycles. Scripting languages have proven their usefulness in various application areas. Unix relies heavily on shell scripting to accomplish many complex tasks. Visual Basic, in combination with ActiveX, provides a low-entry barrier into the world of component-based programming. Tcl/Tk is still popular to rapidly develop GUI-based applications. And then there's JavaScript, which has gained considerable importance in realizing clientside functionality on Web apps. In a survey on the most popular programming languages, JavaScript made it to the Top 10.

  • 9.
    Land, Rikard
    et al.
    Mälardalens högskola, Akademin för innovation, design och teknik.
    Crnkovic, Ivica
    Mälardalens högskola, Akademin för innovation, design och teknik.
    Oh Dear, We Bought Our Competitor: Integrating Similar Software Systems2011Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 28, nr 2, s. 75-82Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    How do you transition from several functionally overlapping systems to just one? A look at 10 case studies addresses the technological, personnel, and organizational challenges.

  • 10.
    Strandberg, Per
    et al.
    Westermo Research and Development, Sweden.
    Afzal, Wasif
    Mälardalens högskola, Akademin för innovation, design och teknik, Inbyggda system.
    Ostrand, Thomas J.
    Weyuker, Elaine
    Mälardalens högskola, Akademin för innovation, design och teknik, Inbyggda system.
    Sundmark, Daniel
    Mälardalens universitet, Akademin för innovation, design och teknik, Inbyggda system.
    Automated System Level Regression Test Prioritization in a Nutshell2017Ingår i: IEEE Software, ISSN 0740-7459, E-ISSN 1937-4194, Vol. 34, nr 4, s. 30-37, artikel-id 7974685Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Westermo Research and Development has developed SuiteBuilder, an automated tool to determine an effective ordering of regression test cases. The ordering is based on factors such as fault detection success, the interval since the last execution, and code modifications. SuiteBuilder has enabled Westermo to overcome numerous regression-testing problems, including lack of time to run a complete regression suite, failure to detect bugs in a timely manner, and repeatedly omitted tests. In the tool's first two years of use, reordered test suites finished in the available time, most fault-detecting test cases were located in the first third of suites, no important test case was omitted, and the necessity for manual work on the suites decreased greatly. 

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