Open Access

Research on project schedule optimization model construction and engineering efficiency improvement method

 and   
Sep 03, 2024

Cite
Download Cover

Yu, X., & Zuo, H. (2022). Intelligent construction optimization control of construction project schedule based on the fuzzy logic neural network algorithm. Mathematical Problems in Engineering, 2022(1), 8111504. Search in Google Scholar

Yin, Wei. “Multi-objective optimization of construction schedule based on artificial intelligence optimization algorithm.” 2021 3rd International Conference on Artificial Intelligence and Advanced Manufacture. 2021. Search in Google Scholar

Hegazy, T., & Kamarah, E. (2022). Schedule optimization for scattered repetitive projects. Automation in Construction, 133, 104042. Search in Google Scholar

Liu, Y., Cheng, H., & Liu, C. (2022). Optimization of construction program schedule plans based on multi-objective optimization theory. Iranian Journal of Science and Technology, Transactions of Civil Engineering, 46(6), 4763-4782. Search in Google Scholar

Tavakolan, M., & Nikoukar, S. (2022). Developing an optimization financing cost-scheduling trade-off model in construction project. International Journal of Construction Management, 22(2), 262-277. Search in Google Scholar

Ansari, R., Khalilzadeh, M., & Hosseini, M. R. (2022). A multi-objective dynamic optimization approach to project schedule management: A case study of a gas field construction. KSCE Journal of Civil Engineering, 26(3), 1005-1013. Search in Google Scholar

Liu, J., & Lu, M. (2018). Constraint programming approach to optimizing project schedules under material logistics and crew availability constraints. Journal of construction engineering and management, 144(7), 04018049. Search in Google Scholar

Jiang, H., Tian, M., Chen, Y., Zhang, G., & Peng, X. (2022). Metro Engineering Project Schedule Optimization Based on Wireless Network Communication and BIM Model Algorithm. Scientific Programming, 2022(1), 3900615. Search in Google Scholar

Panwar, A., & Jha, K. N. (2019). A many-objective optimization model for construction scheduling. Construction management and economics, 37(12), 727-739. Search in Google Scholar

García-Nieves, J. D., Ponz-Tienda, J. L., Ospina-Alvarado, A., & Bonilla-Palacios, M. (2019). Multipurpose linear programming optimization model for repetitive activities scheduling in construction projects. Automation in construction, 105, 102799. Search in Google Scholar

Guo, K., & Zhang, L. (2022). Multi-objective optimization for improved project management: Current status and future directions. Automation in Construction, 139, 104256. Search in Google Scholar

Elbeltagi, E., Ammar, M., Sanad, H., & Kassab, M. (2016). Overall multiobjective optimization of construction projects scheduling using particle swarm. Engineering, Construction and Architectural Management, 23(3), 265-282. Search in Google Scholar

Zou, X., Zhang, L., & Zhang, Q. (2022). Time-cost optimization in repetitive project scheduling with limited resources. Engineering, Construction and Architectural Management, 29(2), 669-701. Search in Google Scholar

Habibi, F., Barzinpour, F., & Sadjadi, S. J. (2017). A multi-objective optimization model for project scheduling with time-varying resource requirements and capacities. Journal of industrial and systems engineering, 10(special issue on scheduling), 92-118. Search in Google Scholar

Tran, D. H., & Long, L. D. (2018). Project scheduling with time, cost and risk trade-off using adaptive multiple objective differential evolution. Engineering, Construction and Architectural Management, 25(5), 623-638. Search in Google Scholar

Brian Leard,Zibo Wang,Sai Tej Paruchuri,Eugenio Schuster & Tariq Rafiq. (2024). Hybrid model predictive control techniques for safety factor profile and stored energy regulation while incorporating NBI constraints. Nuclear Fusion(8). Search in Google Scholar

Yan Song,Yifan Xiu,Liping Zhou & Jingyuan Wang. (2024). Implementing multi-attribute utility theory in service recovery: An operational management perspective on online retailing. Journal of Retailing and Consumer Services103968-103968. Search in Google Scholar

Yufei Zuo,Jinting Shao & Navid Razmjooy. (2024). Anterior cruciate ligament tear detection using gated recurrent unit and flexible fitness dependent optimizer. Biomedical Signal Processing and Control(PB), 106616-106616. Search in Google Scholar

Language:
English