板料场双载起重机调度的数学模型及启发式方法

IF 6 2区 管理学 Q1 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
Zixiong Dong, Ada Che, Jianguang Feng
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引用次数: 0

摘要

研究了板场无约束双载作业下的起重机调度问题。它旨在优化起重机作业顺序,以最小化完工时间。不像传统的起重机作业,每趟只能搬运一到两块板材,不受限制的双载荷作业可以在一次作业中运输两块以上的板材,从而提高了物流效率,缩短了完工时间。为了解决这个问题,我们提出了两个混合整数线性规划(MILP)模型来解决中小型实例。我们为大型实例开发了两种启发式:混合启发式和数学启发式。混合启发式算法将禁忌搜索集成在自适应大邻域搜索(ALNS)框架中,而数学算法将这种混合启发式算法与MILP模型集成,充分利用了精确方法和启发式方法的优点。大量的计算实验表明,虽然所提出的MILP模型可以精确地解决多达50个任务的实例,但混合启发式和数学方法在解决大型实例方面表现出鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical models and heuristics for double-load crane scheduling in slab yards
This paper studies a novel crane scheduling problem with unconstrained double-load operations (CSP-UDL) in slab yards. It aims to optimize the sequence of crane operations to minimize makespan. Unlike conventional crane operations, which handle one or two slabs per trip, the unconstrained double-load operation enables the transport of more than two slabs in a single trip, thereby improving logistic efficiency and reducing the makespan. To tackle this problem, we propose two mixed integer linear programming (MILP) models for solving small- and medium-sized instances. We develop two heuristics for large-sized instances: a hybrid heuristic and a matheuristic. The hybrid heuristic integrates tabu search within an adaptive large neighborhood search (ALNS) framework, while the matheuristic integrates this hybrid heuristic with an MILP model, leveraging the strengths of both exact and heuristic methods. Extensive computational experiments demonstrate that while the proposed MILP models can exactly solve instances with up to 50 tasks, the hybrid heuristic and the matheuristic demonstrate robust performance in solving large-sized instances.
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来源期刊
European Journal of Operational Research
European Journal of Operational Research 管理科学-运筹学与管理科学
CiteScore
11.90
自引率
9.40%
发文量
786
审稿时长
8.2 months
期刊介绍: The European Journal of Operational Research (EJOR) publishes high quality, original papers that contribute to the methodology of operational research (OR) and to the practice of decision making.
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