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Analysis of Workflow Variability in Modular Integrated Construction Manufacturing Using Cooperative Game Theory

  • Zhongze YANG
  • , Weisheng LU*
  • , Liupengfei WU
  • , Jinying XU
  • *Corresponding author for this work

Research output: Journal PublicationsJournal Article (refereed)peer-review

Abstract

Workflow variability is a classic management challenge that could seriously impede production or project performance. However, there are sporadic efforts to analyze it in modular integrated construction (MiC), particularly its off-site manufacturing, which provides an intriguing management context with features from both contemporary manufacturing and traditional construction. This research aims to analyze workflow variabilities in MiC and investigate their impacts on manufacturing by adopting cooperative game theory. The MiC production process is first translated into a cooperative game based on real-life project data. Then the impacts of the workflow variability down to specific activities are calculated separately, represented by the Shapley values and considering their nonlinear relationships. Through the cooperative game simulations, the research can clearly identify the workflow variabilities of critical activities that can undermine production efficiency to be given special attention in production planning and control. A major contribution of this research is to apply cooperative game theory for workflow variability management in MiC manufacturing. Production managers can use the tool to better improve their MiC production performance.

Original languageEnglish
Article number04026115
Number of pages12
JournalJournal of Construction Engineering and Management
Volume152
Issue number8
Early online date27 May 2026
DOIs
Publication statusE-pub ahead of print - 27 May 2026

Bibliographical note

The client, main contractor, and manufacturing factory of the construction project are also much appreciated for providing enormous support to this research.

Publisher Copyright:
© 2026 American Society of Civil Engineers.

Funding

The work presented in this paper was financially supported by the Hong Kong Innovation and Technology Fund (ITF) (No. ITP/029/20LP).

Keywords

  • Cooperative game theory
  • Industrialized house building
  • Modular integrated construction
  • Off-site construction
  • Shapley value
  • Workflow variability

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