调度不相关的并行机器以最小化总加权延迟

D. Na, Dong-Won Kim, Wooseung Jang, F. F. Chen
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引用次数: 142

摘要

本文研究了不相关并行机的批量调度问题,以最小化总加权延迟。相同或类似的作业通常分批处理,以减少设置和/或处理时间。本地调度规则如最早的加权到期日、最短的加权处理时间、最早的加权到期日以及进程利用率差等都是针对批调度需求量身定制的。根据批调度的特点,提出了一种两级批调度框架。针对单机调度中在总加权延迟方面表现优异的启发式算法,如改进的最早到期日规则和改进的时间成本规则,对问题进行了扩展。模拟退火算法作为一种元启发式算法也被提出以获得近似最优解。通过计算实验,比较了所提出的启发式方法与化合物半导体制造工厂的切割过程数据
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheduling unrelated parallel machines to minimize total weighted tardiness
This paper addresses the batch scheduling problem of unrelated parallel machines attempting to minimize the total weighted tardiness. Identical or similar jobs are typically processed in batches to decrease setup and/or processing times. Local dispatching rules such as the earliest weighted due date, the shortest weighted processing time, and the earliest weighted due date with a process utilization spread are tailored to the batch scheduling requirements. Based on the features of batch scheduling, a two-level batch scheduling framework is suggested. Existing heuristics, which show excellent performance in terms of total weighted tardiness for the single machine scheduling, such as the modified earliest due date rule and the modified cost over time rule, are extended for the problem. The simulated annealing algorithm as a meta-heuristic is also presented to obtain near optimal solutions. The proposed heuristics are compared through computational experiments with data from the dicing process of a compound semiconductor manufacturing facility
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