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Mixed-integer/linear and constraint programming approaches for activity scheduling in a nuclear research facility

机译:核研究机构活动调度的混合整数/线性和约束编程方法

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This paper presents the results of a research project aiming to optimise the scheduling of activities within a research laboratory of the 'Commissariat a l'Energie Atomique et aux Energies Alternatives (CEA)'. To tackle this problem, we decompose every activity into a set of elementary tasks to apply standard scheduling methods. We model the problem as an extended version of the Multi-Skill Project Scheduling Problem (MSPSP). As a first approach, we propose a Multi-Skill Project Scheduling Problem with penalty for preemption, along with its mixed-integer/linear programming (MILP) formulation, where the preemption is allowed applying a penalty every time an activity is interrupted. However, the previous approach does not take into account all safety constraints at the facility, and a more accurate variant of the problem is needed. We propose then to integrate the concept of partial preemption to the MSPSP. This concept, that has not been yet studied in the scientific literature, implies that only a subset of resources is released during preemption periods. The resulting MSPSP with partial preemption (MSPSP-PP) is modelled using two methodologies: MILP and constraint programming. Regarding the industrial need of having good solutions in a short time, we also present a greedy algorithm for the MSPSP-PP.
机译:本文介绍了一个研究项目的结果,旨在优化“委员会AENERGIE ATOMIQUE ET AUX Energies替代品(CEA)”研究实验室内的活动计划。为了解决这个问题,我们将每种活动分解为一组基本任务以应用标准调度方法。我们将问题建模为多技能项目调度问题(MSPSP)的扩展版本。作为第一种方法,我们提出了一个多技能项目调度问题,以抢占罚款,以及其混合整数/线性编程(MILP)制剂,其中允许在每次中断活动时施加罚款。但是,之前的方法没有考虑到设施的所有安全限制,并且需要更准确的问题变体。我们建议将部分抢占的概念整合到MSPSP。在科学文献中尚未研究的这种概念意味着在抢占期间只释放资源子集。由部分抢占(MSPSP-PP)的结果MSPSP使用两种方法进行建模:MILP和约束编程。关于在短时间内具有良好解决方案的工业需求,我们还为MSPSP-PP呈现了一种贪婪算法。

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