Integrating environmental sustainability in construction Time-Cost trade-off for decision-making using hybrid NSGA-III and MOPSO approach

被引:0
|
作者
Analene Montesines Nagayo [1 ]
Rekha Singh [2 ]
Amit Dhawan [3 ]
T. C. Manjunath [4 ]
Altayeb Qasem [5 ]
Krushna Chandra Sethi [6 ]
Kamal Sharma [7 ]
机构
[1] University of Technology and Applied Sciences-Al Musanna,Department of Engineering and Technology
[2] Raj Kumar Goel Institute of Technology,Department of Civil Engineering
[3] Dr. Bhim Rao Ambedkar Polytechnic College,Department of Civil Engineering
[4] Rajarajeswari College of Engineering,Computer Science Engineering Department
[5] College of Architecture and Planning,Department of Building Engineering
[6] Imam Abdulrahman Bin Faisal University,Department of Civil Engineering
[7] Centurion University of Technology and Management,Department of Civil Engineering
[8] Madhav Institute of Technology and Science,undefined
关键词
Time–Cost-Environmental Trade-off; Hybrid Optimization; NSGA-III; MOPSO; Sustainable Construction;
D O I
10.1007/s42107-025-01265-3
中图分类号
学科分类号
摘要
Construction project management often involves optimizing time and cost while ensuring minimal environmental impact. This study presents an innovative hybrid approach combining non-dominated sorting genetic algorithm III (NSGA-III) and multi-objective particle swarm optimization (MOPSO) to address the time-cost-environmental sustainability trade-off (TCEST) in construction projects. The proposed model aims to minimize project completion time and cost while maximizing environmental sustainability. A case study is conducted to validate the model, incorporating diverse construction activities and their respective time, cost, and environmental sustainability metrics. The results reveal Pareto-optimal solutions demonstrating significant trade-offs among the three objectives. The hybrid approach outperforms standalone algorithms in terms of solution diversity, convergence, and hypervolume indicators. Weighted sum methods are employed to select the most suitable solution from the Pareto front based on project priorities. Correlation analysis further explores interdependencies among objectives, emphasizing the feasibility of balancing these critical factors. The study contributes a robust decision-support tool for sustainable project planning, facilitating informed decision-making in modern construction management.
引用
收藏
页码:1527 / 1542
页数:15
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