arrow
返回

Intelligent optimization framework for tunnel construction organization driven by multi-source data and process-level simulation

delete2025-08-28
delete0
PRE
AI
马国丰 封面图
马国丰 (Guofeng Ma) *
Y
Yanbing Chen
C
Chengyuan Du *
DOI:10.1080/15623599.2025.2550482delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Tunnel construction faces challenges including complex geological conditions, strong inter-coupling among processes, and frequent dynamic disturbances. Existing organization methods struggle to achieve dynamic multi-objective optimization of quality, schedule, cost, and safety. This paper proposes an intelligent optimization framework integrating multi-source information with process-level simulation, which decouples spatiotemporal coupling in complex systems through three-level hierarchical modeling. By combining disturbance prediction with simulation calibration, it enables dynamic adjustment of plans and multi-objective optimization. First, a parametric process model is built using hierarchical modeling, with dynamic algorithms simulating random disturbances. Second, expert evaluation and simulation calibration establish mapping relationships between quality scores and production data. Finally, a closed-loop system of “planning–execution–monitoring–optimization” is formed through dynamic feedback. This research contributes: (1) A spatiotemporal-decoupled hierarchical modeling method overcoming coupling limitations of static models; (2) Collaborative simulation for disturbance events enhancing prediction accuracy through joint modeling of cycles and maintenance strategies; (3) A dual-driven mechanism integrating expert knowledge with simulation data, enabling adaptive adjustment of multi-objective weights.
Keyword:
Dynamic multi-objective optimization
hierarchical process simulation
intelligent management
tunnel construction organization

期刊

International Entrepreneurship and Management Journal 封面图
International Entrepreneurship and Management Journal
IF:
3.9
论文数:
2.8K
被引数:
4.6K

机构

B
b china railway construction bridge engineering bureau
学者数:
1
论文数: 1
被引数: 0
T
tongji university
学者数:
7.9W
论文数: 6.0W
被引数: 98
引用论文

引用论文

err分享
err收藏
学者 查看更多内容