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COIM: An object‐process based method for analyzing architectures of complex, interconnected, large‐scale socio‐technical systems

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  • Carlos A. Osorio
  • Dov Dori
  • Joseph Sussman

Abstract

There is growing evidence for the relevance of human behavioral factors in successful development of new products, processes, and services. The evidence is even clearer when the forces affecting the development and evolution of long‐lived, large, and open complex socio‐technical systems are examined. Methods that study the architecture of these systems can help scholars and practitioners to better understand, manage, and develop socio‐technical systems. We propose an approach and a method to address these needs that is grounded in the theory of systems architecture and builds on the strengths of Object Process Methodology (OPM) and the process for representing Complex Large‐scale Interconnected Open Socio‐technical (CLIOS) systems. We do so by integrating these methods into the CLIOS‐OPM Integrated Method (COIM). COIM is conducive to studying a system's architecture and its evolution, as it is enhanced by a set of qualitative methods for answering questions about the reasons (why) and process (how) of change in human‐made systems over time. © 2011 Wiley Periodicals, Inc.

Suggested Citation

  • Carlos A. Osorio & Dov Dori & Joseph Sussman, 2011. "COIM: An object‐process based method for analyzing architectures of complex, interconnected, large‐scale socio‐technical systems," Systems Engineering, John Wiley & Sons, vol. 14(4), pages 364-382, December.
  • Handle: RePEc:wly:syseng:v:14:y:2011:i:4:p:364-382
    DOI: 10.1002/sys.20185
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    Cited by:

    1. Kim Davis & Thomas Mazzuchi & Shahram Sarkani, 2013. "Architecting technology transitions: A sustainability‐oriented sociotechnical approach," Systems Engineering, John Wiley & Sons, vol. 16(2), pages 193-212, June.
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    3. Amira Sharon & Dov Dori, 2017. "Model‐Based Project‐Product Lifecycle Management and Gantt Chart Models: A Comparative Study," Systems Engineering, John Wiley & Sons, vol. 20(5), pages 447-466, September.
    4. Shiva Abdoli & Sami Kara, 2017. "A Modelling Framework to Design Executable Logical Architecture of Engineering Systems," Modern Applied Science, Canadian Center of Science and Education, vol. 11(9), pages 1-75, September.

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