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Some future trends and implications for systems and software engineering processes

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  • Barry Boehm

Abstract

In response to the increasing criticality of software within systems and the increasing demands being put onto 21st century systems, systems and software engineering processes will evolve significantly over the next two decades. This paper identifies eight relatively surprise‐free trends—the increasing interaction of software engineering and systems engineering; increased emphasis on users and end value; increased emphasis on systems and software dependability; increasingly rapid change; increasing global connectivity and need for systems to interoperate; increasingly complex systems of systems; increasing needs for COTS, reuse, and legacy systems and software integration; and computational plenty. It also identifies two “wild card” trends: increasing software autonomy and combinations of biology and computing. It then discusses the likely influences of these trends on systems and software engineering processes between now and 2025, and presents an emerging scalable spiral process model for coping with the resulting challenges and opportunities of developing 21st century software‐intensive systems and systems of systems. © 2006 Wiley Periodicals, Inc. Syst Eng 9: 1–19, 2006

Suggested Citation

  • Barry Boehm, 2006. "Some future trends and implications for systems and software engineering processes," Systems Engineering, John Wiley & Sons, vol. 9(1), pages 1-19, March.
  • Handle: RePEc:wly:syseng:v:9:y:2006:i:1:p:1-19
    DOI: 10.1002/sys.20044
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    Cited by:

    1. Pieter van der Spek & Chris Verhoef, 2014. "Balancing Time‐to‐Market and Quality in Embedded Systems," Systems Engineering, John Wiley & Sons, vol. 17(2), pages 166-192, June.
    2. Brian J. Phillips & Mark Blackburn, 2016. "Towards a Design Pattern for Adaptive Systems Inspired by the Neocortex," Systems Engineering, John Wiley & Sons, vol. 19(3), pages 222-234, May.
    3. Natalia Shmatko & Galina Volkova, 2020. "Bridging the Skill Gap in Robotics: Global and National Environment," SAGE Open, , vol. 10(3), pages 21582440209, September.
    4. Clyde Chittister & Yacov Y. Haimes, 2010. "Harmonizing high performance computing (HPC) with large‐scale complex systems in computational science and engineering," Systems Engineering, John Wiley & Sons, vol. 13(1), pages 47-57, March.
    5. Clement Smartt & Susan Ferreira, 2011. "Advancing systems engineering in support of the bid and proposal process," Systems Engineering, John Wiley & Sons, vol. 14(3), pages 255-266, September.
    6. Clyde Chittister & Yacov Y. Haimes, 2011. "Harmonizing ABET accreditation and the certification of systems engineers," Systems Engineering, John Wiley & Sons, vol. 14(3), pages 341-348, September.
    7. Anandhi Vivekanandan Dhukaram & Chris Baber, 2016. "A Systematic Approach for Developing Decision Aids: From Cognitive Work Analysis to Prototype Design and Development," Systems Engineering, John Wiley & Sons, vol. 19(2), pages 79-100, March.

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