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An adjustable robust optimization model for the resource-constrained project scheduling problem with uncertain activity durations

机译:活动持续时间不确定的资源受限项目调度问题的可调鲁棒优化模型

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摘要

This paper addresses the resource-constrained project scheduling problem with uncertain activity durations. An adaptive robust optimization model is proposed to derive the resource allocation decisions that minimize the worst-case makespan, under general polyhedral uncertainty sets. The properties of the model are analyzed, assuming that the activity durations are subject to interval uncertainty where the level of robustness is controlled by a protection factor related to the risk aversion of the decision maker. A general decomposition approach is proposed to solve the robust counterpart of the resource-constrained project scheduling problem, further tailored to address the uncertainty set with the protection factor. An extensive computational study is presented on benchmark instances adapted from the PSPLIB. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文解决了活动持续时间不确定的资源受限项目调度问题。提出了一种自适应鲁棒优化模型,以在一般多面体不确定性集下得出使最坏情况下的制造期最小化的资源分配决策。假设活动持续时间受到区间不确定性的影响,则分析模型的属性,其中健壮性水平由与决策者的风险规避有关的保护因子控制。提出了一种通用的分解方法来解决资源受限的项目调度问题的鲁棒对应,并进一步调整以解决带有保护因子的不确定性。针对PSPLIB改编的基准实例进行了广泛的计算研究。 (C)2016 Elsevier Ltd.保留所有权利。

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