一种新的具有序列依赖设置的单机调度的抓取和路径链接

Jiaxiang Luo, Yueming Hu
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引用次数: 8

摘要

安装(转换)时间通常需要清洗或更换夹具的过程。它的长度有时强烈地依赖于紧随其后的操作。具有这种设置时间的调度问题被称为具有序列依赖的设置。本文研究了一个具有序列相关设置的单机调度问题,以最小化总加权延迟。针对NP-hard问题,提出了一种结合路径重链接的贪婪随机自适应搜索方法(GRASP)。在算法中,我们的主要贡献是在GRASP的改进阶段提出了一种新的迭代滤波-风扇(IFF)算法,在PR中提出了一种基于块插入的路径构建方法。我们将我们的算法与离散微分进化(DDE)、离散粒子群优化(DPSO)和单一IFF算法在一组文献中的测试实例上进行了比较。结果表明,该算法具有很强的竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new GRASP and path relinking for single machine scheduling with sequence dependent setups
Setup (changeover) time is often needed by the processes with operations of cleaning or changing fixtures. Its length strongly depends on the immediately succeeding operation sometimes. The scheduling problems with such setup times are called to have sequence dependent setups. This paper focuses on a single machine scheduling problem with sequence dependent setups to minimize total weighted tardiness. A greedy randomized adaptive search procedure (GRASP) combined with path relinking (PR) is proposed for the NP-hard problem. In the algorithm, our main contributions are a new iterated filter-and-fan (IFF) algorithm in the improvement phase of GRASP and a block insertion based path construction method in PR. We compare our algorithm with discrete differential evolution (DDE), discrete particle swarm optimization (DPSO) and single IFF algorithm on a set of test instances from literature. The results show that the algorithm performs very competitively.
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