基于约束规划的船体分段装配调度问题分解策略

A constraint programming-based decomposition strategy for the block assembly scheduling problem in shipbuilding

International Journal of Production Research · 2025
被引 2
ABS 3

中文导读

提出一种基于约束规划的分解策略,优化船舶建造中的分段装配调度,解决带装配、有限缓冲、分段吊装策略和交货期的柔性作业车间调度问题,实验表明缓冲约束对调度效率影响显著。

Abstract

This study presents a novel Constraint Programming-based decomposition strategy to optimise block assembly scheduling in shipbuilding, addressing the complex Flexible Job-Shop Scheduling Problem with Assemblies, Limited Buffer Capacity, Block Erection Strategy, and Due Dates (FJSP-A-LBC-BE-DD). The proposed approach integrates buffer constraints and block erection strategies into a comprehensive CP formulation while introducing an innovative decomposition method that optimises makespan and resource allocation. Through experimental validation, the results demonstrate the effectiveness of this strategy, revealing that buffer capacity constraints play a critical role in scheduling efficiency, whereas the block erection strategy has a limited influence on makespan optimisation. The developed monolithic CP model for resource usage optimisation, combined with the decomposition strategy for makespan minimisation, provides a scalable and practical solution for industrial-scale shipbuilding scheduling. By outperforming existing models that overlook buffer limitations, this methodology establishes a structured framework for enhancing production planning. Future directions involve real-world applications and integration with simulation models for real-time re-optimisation.

船舶建造生产调度约束规划柔性作业车间调度优化算法