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首页> 外文期刊>The Journal of Artificial Intelligence Research >Scheduling a Dynamic Aircraft Repair Shop with Limited Repair Resources
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Scheduling a Dynamic Aircraft Repair Shop with Limited Repair Resources

机译:安排维修资源有限的动态飞机维修店

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We address a dynamic repair shop scheduling problem in the context of military aircraft fleet management where the goal is to maintain a full complement of aircraft over the long-term. A number of flights, each with a requirement for a specific number and type of aircraft, are already scheduled over a long horizon. We need to assign aircraft to flights and schedule repair activities while considering the flights requirements, repair capacity, and aircraft failures. The number of aircraft awaiting repair dynamically changes over time due to failures and it is therefore necessary to rebuild the repair schedule online. To solve the problem, we view the dynamic repair shop as successive static repair scheduling sub-problems over shorter time periods. We propose a complete approach based on the logic-based Benders decomposition to solve the static sub-problems, and design different rescheduling policies to schedule the dynamic repair shop. Computational experiments demonstrate that the Benders model is able to find and prove optimal solutions on average four times faster than a mixed integer programming model. The rescheduling approach having both aspects of scheduling over a longer horizon and quickly adjusting the schedule increases aircraft available in the long term by 10% compared to the approaches having either one of the aspects alone.
机译:我们在军用飞机机队管理的背景下解决动态维修车间调度问题,其目标是长期保持飞机的完整数量。已经安排了许多飞行,每次飞行都需要特定数量和类型的飞机,这是很长一段时间的。我们需要将飞机分配给航班并安排维修活动,同时考虑航班需求,维修能力和飞机故障。由于故障,等待维修的飞机数量会随着时间动态变化,因此有必要在线重建维修时间表。为了解决该问题,我们将动态维修车间视为较短时间内的连续静态维修调度子问题。我们提出了一种基于逻辑的Benders分解的完整方法来解决静态子问题,并设计不同的重新计划策略来安排动态维修车间。计算实验表明,Benders模型能够找到和证明最优解的平均速度比混合整数规划模型快四倍。与仅具有上述任一方面的方法相比,具有在较长时间范围内进行调度和快速调整时间表这两个方面的重新调度方法可使飞机的长期长期使用率增加10%。

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