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A new interval-valued fuzzy multi-objective approach for project time–cost–quality trade-off problem with activity crashing and overlapping under uncertainty

Pouyan Mahdavi-Roshan (Department of Industrial Engineering, Shahed University, Tehran, Iran)
Seyed Meysam Mousavi (Department of Industrial Engineering, Shahed University, Tehran, Iran)

Kybernetes

ISSN: 0368-492X

Article publication date: 6 July 2022

Issue publication date: 1 November 2023

162

Abstract

Purpose

Most projects are facing delays, and accelerating the pace of project progress is a necessity. Project managers are responsible for completing the project on time with minimum cost and with maximum quality. This study provides a trade-off between time, cost, and quality objectives to optimize project scheduling.

Design/methodology/approach

The current paper presents a new resource-constrained multi-mode time–cost–quality trade-off project scheduling model with lags under finish-to-start relations. To be more realistic, crashing and overlapping techniques are utilized. To handle uncertainty, which is a source of project complexity, interval-valued fuzzy sets are adopted on several parameters. In addition, a new hybrid solution approach is developed to cope with interval-valued fuzzy mathematical model that is based on different alpha-levels and compensatory methods. To find the compatible solution among conflicting objectives, an arithmetical average method is provided as a compensatory approach.

Findings

The interval-valued fuzzy sets approach proposed in this paper is denoted to be scalable, efficient, generalizable and practical in project environments. The results demonstrated that the crashing and overlapping techniques improve time–cost–quality trade-off project scheduling model. Also, interval-valued fuzzy sets can properly manage expressions of the uncertainty of projects which are realistic and practical. The proposed mathematical model is validated by solving a medium-sized dataset an adopted case study. In addition, with a sensitivity analysis approach, the solutions are compared and the model performance is confirmed.

Originality/value

This paper introduces a new continuous-based, resource-constrained, and multi-mode model with crashing and overlapping techniques simultaneously. In addition, a new hybrid compensatory solution approach is extended based on different alpha-levels to handle interval-valued fuzzy multi-objective mathematical model of project scheduling with influential uncertain parameters.

Keywords

Acknowledgements

The authors would like thank anonymous reviewers for the valuable comments and recommendations to improve the quality of the primary manuscript.

Citation

Mahdavi-Roshan, P. and Mousavi, S.M. (2023), "A new interval-valued fuzzy multi-objective approach for project time–cost–quality trade-off problem with activity crashing and overlapping under uncertainty", Kybernetes, Vol. 52 No. 10, pp. 4731-4759. https://doi.org/10.1108/K-11-2021-1217

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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