An integrated fuzzy multi-criteria decision making and mixed-integer linear programming optimization framework for project risk assessment and response strategy selection: A case study of a liquefied petroleum gas pipeline construction project

Effective project risk management helps to reduce negative outcomes, especially in construction projects. Because project risk management involves many different parts, an integrated approach is needed to cover all phases. This study proposes an integrated framework for risk planning, identification, assessment, and response strategy selection, addressing major weaknesses in traditional risk management methods. The framework systematically identifies risks, their characteristics, and their impact zones. These elements help to evaluate each risk thoroughly. Risk assessment is performed using fuzzy multi-criteria decision-making, fuzzy SWARA (Step-wise Weight Assessment Ratio Analysis) and fuzzy WSM (Weighted Sum Model). The selection of risk response strategies is then formulated as a mixed integer linear programming (MILP) optimization model. This produces an optimal risk response strategy that reduces threats and takes advantage of opportunities. To provide a proof-of-concept illustration of the proposed integrated framework, we present a case study utilizing empirical data from a real‑world liquefied petroleum gas (LPG) pipeline construction project. The findings identify 20 distinct risks and 12 viable risk response strategies. The optimization component successfully selects six out of twelve response strategies. This achieves a 38.9% reduction in total risk value while meeting the project’s constraints.

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PLoS ONE
Published
2026-09-24
DOI
https://doi.org/10.1371/journal.pone.0357560
Primary Topic
Construction Project Management and Performance
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article
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An integrated fuzzy multi-criteria decision making and mixed-integer linear programming optimization framework for project risk assessment and response strategy selection: A case study of a liquefied petroleum gas pipeline construction project

Asgar Khademvatani, Mahdi Iranfar, Mohammad Senisel Bachari
PLoS ONE
Construction Project Management and Performance
article

An integrated fuzzy multi-criteria decision making and mixed-integer linear programming optimization framework for project risk assessment and response strategy selection: A case study of a liquefied petroleum gas pipeline construction project

Asgar Khademvatani, Mahdi Iranfar, Mohammad Senisel Bachari
article en

Abstract

Effective project risk management helps to reduce negative outcomes, especially in construction projects. Because project risk management involves many different parts, an integrated approach is needed to cover all phases. This study proposes an integrated framework for risk planning, identification, assessment, and response strategy selection, addressing major weaknesses in traditional risk management methods. The framework systematically identifies risks, their characteristics, and their impact zones. These elements help to evaluate each risk thoroughly. Risk assessment is performed using fuzzy multi-criteria decision-making, fuzzy SWARA (Step-wise Weight Assessment Ratio Analysis) and fuzzy WSM (Weighted Sum Model). The selection of risk response strategies is then formulated as a mixed integer linear programming (MILP) optimization model. This produces an optimal risk response strategy that reduces threats and takes advantage of opportunities. To provide a proof-of-concept illustration of the proposed integrated framework, we present a case study utilizing empirical data from a real‑world liquefied petroleum gas (LPG) pipeline construction project. The findings identify 20 distinct risks and 12 viable risk response strategies. The optimization component successfully selects six out of twelve response strategies. This achieves a 38.9% reduction in total risk value while meeting the project’s constraints.

PLoS ONEVol. 21(9)
Petroleum University of Technology (IR)
Peace, Justice and strong institutions
Openalex Percentile: Top 7%
Construction Project Management and Performance
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An integrated fuzzy multi-criteria decision making and mixed-integer linear programming optimization framework for project risk assessment and response strategy selection: A case study of a liquefied petroleum gas pipeline construction project — Asgar Khademvatani, Mahdi Iranfar, et al. · PLoS ONE (2026) | TGRS Research Map | TGRS