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Performance-based control of variability and tolerance in off-site manufacture and assembly: optimization of penalty on poor production quality

Author

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  • Mehrdad Arashpour
  • Amin Heidarpour
  • Ali Akbar Nezhad
  • Zahra Hosseinifard
  • Nicholas Chileshe
  • Reza Hosseini

Abstract

Defects and quality problems in off-site manufacturing of building parts are caused by different variables. Subsequently, rework is required during on-site subassembly aggregation. Rework and tampering with prefabricated parts has implications including suboptimal structural/non-structural performance, delays and increased costs. Currently there is a gap in the off-site construction literature in developing effective interventions to reflect on variability in operations of subassembly manufacturers. On this basis, and in the first step of the current research, point clouds of the as-built status of parts are generated by laser scanners and compared with the as-designed status represented by Building Information models (BIM). Then, optimization modelling is used for development of a balanced penalty and incentive (PI) scheme to minimize variability. For this purpose, total expenditure on variability reduction is offset by revenues generated from penalties on poor quality. This optimization-based research contributes to the off-site construction literature by providing cost-effective solutions to quality problems. Furthermore, models and findings are of practical importance to off-site manufacturers by encouraging precision and discouraging discrepancy.

Suggested Citation

  • Mehrdad Arashpour & Amin Heidarpour & Ali Akbar Nezhad & Zahra Hosseinifard & Nicholas Chileshe & Reza Hosseini, 2020. "Performance-based control of variability and tolerance in off-site manufacture and assembly: optimization of penalty on poor production quality," Construction Management and Economics, Taylor & Francis Journals, vol. 38(6), pages 502-514, June.
  • Handle: RePEc:taf:conmgt:v:38:y:2020:i:6:p:502-514
    DOI: 10.1080/01446193.2019.1616789
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    Cited by:

    1. Seyed Armin Mirhosseini & Reza Kiani Mavi & Neda Kiani Mavi & Behzad Abbasnejad & Farzaneh Rayani, 2020. "Interrelations among Leadership Competencies of BIM Leaders: A Fuzzy DEMATEL-ANP Approach," Sustainability, MDPI, vol. 12(18), pages 1-30, September.
    2. Hosang Hyun & Hyung-Geun Kim & Jin-Sung Kim, 2022. "Integrated Off-Site Construction Design Process including DfMA Considerations," Sustainability, MDPI, vol. 14(7), pages 1-20, March.
    3. Lerche, J. & Lorentzen, S. & Enevoldsen, P. & Neve, H.H., 2022. "The impact of COVID -19 on offshore wind project productivity – A case study," Renewable and Sustainable Energy Reviews, Elsevier, vol. 158(C).

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