Single-Machine Scheduling with a Deteriorating Maintenance Activity and DeJong’s Learning Effect

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, THEORY & METHODS
Jie Gao, Juan Zou, Yuzhong Zhang
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引用次数: 0

Abstract

In this paper, we study the single-machine scheduling problems with DeJong’s learning effect and deteriorating maintenance activity, where DeJong’s learning effect is a special position-based learning effect and the duration of the deteriorating maintenance activity is a linear increasing function of its starting time. Our goal is to determine the job sequence of all jobs and the position of the maintenance activity to minimize some performance measures. When the performance measures are the makespan and the total completion time, we show that both of them can be solved in polynomial time. When the performance measure is the total weighted completion time, we develop a pseudo-polynomial time dynamic programming algorithm under a special case. When the performance measure is the maximum lateness, we show that the earliest due date first (EDD) order is a bad algorithm for the general case, and develop a polynomial time algorithm under a special case.
具有退化维修活动的单机调度与DeJong学习效应
本文研究了具有DeJong学习效应和退化维修活动的单机调度问题,其中DeJong学习效应是一种特殊的基于位置的学习效应,退化维修活动的持续时间是其开始时间的线性递增函数。我们的目标是确定所有作业的作业顺序和维护活动的位置,以最小化一些性能度量。当性能度量为最大完工时间和总完成时间时,我们证明了它们都可以在多项式时间内求解。当性能指标为总加权完成时间时,给出了一种特殊情况下的伪多项式时间动态规划算法。当性能指标为最大迟到时,我们证明了在一般情况下,最早到期日优先(EDD)顺序是一个不好的算法,并在特殊情况下开发了一个多项式时间算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Foundations of Computer Science
International Journal of Foundations of Computer Science 工程技术-计算机:理论方法
CiteScore
1.60
自引率
12.50%
发文量
63
审稿时长
3 months
期刊介绍: The International Journal of Foundations of Computer Science is a bimonthly journal that publishes articles which contribute new theoretical results in all areas of the foundations of computer science. The theoretical and mathematical aspects covered include: - Algebraic theory of computing and formal systems - Algorithm and system implementation issues - Approximation, probabilistic, and randomized algorithms - Automata and formal languages - Automated deduction - Combinatorics and graph theory - Complexity theory - Computational biology and bioinformatics - Cryptography - Database theory - Data structures - Design and analysis of algorithms - DNA computing - Foundations of computer security - Foundations of high-performance computing
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