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Mixed Integer Programming models for planning maintenance at offshore wind farms under uncertainty

机译:不确定情况下用于规划海上风电场维护的混合整数规划模型

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摘要

We introduce the Stochastic Maintenance Fleet Transportation Problem for Offshore wind farms (SMFTPO), in which a maintenance provider determines an optimal, medium-term planning for maintaining multiple wind farms while controlling for uncertainty in the maintenance tasks and weather conditions. Since the maintenance provider is typically not the owner of a wind farm, it needs to adhere minimum service requirements that specify the required service. We consider three of such settings: (1) perform all maintenance tasks, (2) allow for a fraction of unscheduled tasks, and (3) incentivize to perform maintenance rather quickly. We provide a two-stage stochastic mixed integer programming model for the three SMFTPO settings, and solve it by means of Sample Average Approximation. In addition, we provide an overview of the, what we discovered, non-aligned modeling assumptions in the literature regarding operational decisions. By providing a series of special cases of the second-stage problem resembling the different modeling assumptions, we aim to establish a common consensus regarding the key modeling decisions to be taken in maintenance planning problems for offshore wind farms. We provide newly constructed, and publicly available, benchmark sets. We extensively compare the different SMFTPO settings and its special cases on those benchmark sets, and we show that the special case reformulations are very effective for solving the second-stage problems. In addition, we find that for particular cases, established modeling techniques result in overestimations and increased running times.
机译:我们介绍了海上风电场的随机维修车队运输问题(SMFTPO),其中维修服务提供商确定了维护多个风电场的最佳中期计划,同时控制了维修任务和天气状况的不确定性。由于维护提供商通常不是风电场的所有者,因此需要遵守规定所需服务的最低服务要求。我们考虑其中的三种设置:(1)执行所有维护任务,(2)允许执行一些计划外任务,以及(3)激励他们相当快地执行维护。我们为三个SMFTPO设置提供了一个两阶段的随机混合整数编程模型,并通过样本平均近似来解决。此外,我们提供了关于运营决策的文献中未发现的建模假设的概述。通过提供一系列类似于不同建模假设的第二阶段问题的特殊案例,我们旨在就海上风电场维护计划问题中要采取的关键建模决策建立共识。我们提供了新建的和公开可用的基准测试集。我们在这些基准测试集上广泛比较了不同的SMFTPO设置及其特殊情况,并表明特殊情况的重新编写对于解决第二阶段问题非常有效。另外,我们发现对于特定情况,已建立的建模技术会导致高估并增加运行时间。

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