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首页> 外文期刊>European Journal of Industrial Engineering >Stochastic bicriteria single machine scheduling with sequence-dependent job attributes and job-dependent learning effects
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Stochastic bicriteria single machine scheduling with sequence-dependent job attributes and job-dependent learning effects

机译:具有序列相关作业属性和作业相关学习效果的随机双准则单机调度

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摘要

In real world scheduling systems, task or job attributes are stochastic and sequence dependent, learning improves attributes, and schedulers use their cost (or disutility) functions to evaluate schedules with respect to multiple criteria. This paper addresses a stochastic bicriteria single machine scheduling problem wherein processing times, setup times, and reliabilities/un-reliabilities are random variables that are subjected to different learning effects. Setup times are sequence-dependent, reliabilities/un-reliabilities are either position-dependent or sequence-dependent, and learning effects are job-dependent and position-based. The objective is to find the sequence that minimises the expected value of a cost function of two criteria associated with each sequence. The problem is NP-hard to solve; however, we prove that scenarios wherein cost functions are linear, exponential, and fractional can be modelled as quadratic assignment problems, which are solvable exactly or approximately. We also show that special cases with sequence-independent setup times and either position-independent or sequence-independent reliabilities/un-reliabilities can be solved optimally in polynomial time. Computational results on the scenarios with quadratic assignment formulations show that good solutions can be obtained in a reasonable amount of time.
机译:在现实世界的调度系统中,任务或作业属性是随机的且与序列相关,学习可以改善属性,并且调度程序可以使用其成本(或无用)功能来针对多个条件评估调度。本文解决了一个随机双准则单机调度问题,其中处理时间,建立时间和可靠性/不可靠性是受到不同学习效果影响的随机变量。建立时间取决于序列,可靠性/不可靠性取决于位置或序列,学习效果取决于作业和位置。目的是找到使与每个序列相关联的两个标准的成本函数的期望值最小的序列。这个问题很难解决。但是,我们证明了成本函数是线性,指数和分数的方案可以建模为二次分配问题,这些问题可以精确或近似地求解。我们还表明,可以在多项式时间内最佳地解决特殊情况,即与序列无关的建立时间以及与位置无关或与序列无关的可靠性/不可靠性。具有二次分配公式的方案的计算结果表明,可以在合理的时间内获得良好的解决方案。

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