TY - JOUR
T1 - Robust project scheduling considering resource idle costs from a resource flow perspective
AU - Wu, Tianqi
AU - Ma, Ran
AU - He, Zhengwen
AU - Zhang, Yuzhong
N1 - Publisher Copyright:
© 2026 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2026
Y1 - 2026
N2 - In uncertain environments, the asynchronous arrival of multiple resource types during project execution often results in a significant resource idleness problem. However, existing robust scheduling studies seldom consider resource-flow coordination, making it difficult to jointly manage schedule robustness and resource idle costs. To address this challenge, this paper develops a project scheduling scheme that effectively balances schedule stability with the control of resource idle costs. Methodologically, we introduce a pioneering bi-objective scheduling model that integrates resource idle costs with robustness, systematically refining the surrogate robustness measure from a resource flow perspective. Furthermore, a surrogate measure for realised schedule is proposed based on the mean and standard deviation of activity-duration distributions. Comparative experiments utilising the PSPLIB benchmark dataset demonstrate that the proposed approach reduces resource idle costs by an average of 82.25% compared with traditional methods, while preserving schedule robustness. Additionally, the improved NSGA-II demonstrates strong overall competitiveness against benchmark algorithms on most test instances. This research provides a theoretical framework that integrates solution robustness with resource flow coordination for project management under uncertainty, offering effective theoretical support for ensuring execution stability and comprehensive cost control in project management practice.
AB - In uncertain environments, the asynchronous arrival of multiple resource types during project execution often results in a significant resource idleness problem. However, existing robust scheduling studies seldom consider resource-flow coordination, making it difficult to jointly manage schedule robustness and resource idle costs. To address this challenge, this paper develops a project scheduling scheme that effectively balances schedule stability with the control of resource idle costs. Methodologically, we introduce a pioneering bi-objective scheduling model that integrates resource idle costs with robustness, systematically refining the surrogate robustness measure from a resource flow perspective. Furthermore, a surrogate measure for realised schedule is proposed based on the mean and standard deviation of activity-duration distributions. Comparative experiments utilising the PSPLIB benchmark dataset demonstrate that the proposed approach reduces resource idle costs by an average of 82.25% compared with traditional methods, while preserving schedule robustness. Additionally, the improved NSGA-II demonstrates strong overall competitiveness against benchmark algorithms on most test instances. This research provides a theoretical framework that integrates solution robustness with resource flow coordination for project management under uncertainty, offering effective theoretical support for ensuring execution stability and comprehensive cost control in project management practice.
KW - activity duration uncertainty
KW - Project scheduling
KW - resource flow coordination
KW - resource idle costs
KW - robustness
UR - https://www.scopus.com/pages/publications/105043688091
U2 - 10.1080/00207543.2026.2693705
DO - 10.1080/00207543.2026.2693705
M3 - 文章
AN - SCOPUS:105043688091
SN - 0020-7543
JO - International Journal of Production Research
JF - International Journal of Production Research
ER -