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An approach to airline MRO operators planning and scheduling during aircraft line maintenance checks using discrete event simulation

机译:航空公司MRO运算符在飞机线维护检查期间使用离散事件仿真进行规划和调度方法

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The process of scheduling and planning refers to examining aircraft history based on when and where the aircraft should go for service checks. In this paper, the authors focused on line maintenance activities and examined the impact of unexpected factors (Missing tools and safety requirements) on such activities during the process through a Discrete Event Simulation (DES) model. The DES was used to determine the following: 1. The plan time of each maintenance task according to maintenance scheduling based on the X airline company in Libya; 2. A tasks and productivity evaluation which involved examining the number of tasks required to do per check according to the scheduling plan and planned tasks performed by technicians, and; 3. The total elapsed time involved by analysing the average time for each task according to maintenance schedule planning. The results show that, for all scenarios conducted, the DES model was operating at a high level, and in some scenarios, there was a breakdown in service tasks; a clear indication that the workload factor was high during check periods. However, the main finding in this study highlights how a number of different tasks or the breakdown of maintenance work packages were not being completed before the actual time that had been allocated for the general external condition A-check of the aircraft. This made it necessary to study the work package for each check separately and examine these work packages as they relate to DES which presents a potential solution to a more efficient planning approach. This feature enhances the applicability of the proposed method in real-life, and helps airlines cope with the dynamic environment of airline MRO.
机译:调度和规划的过程是指基于时间和地点的飞机应该去维修检查检查飞机的历史。在本文中,作者着重线维护活动,并通过离散事件仿真(DES)模型的过程中考察了关于此类活动的意外因素(缺少工具和安全要求)的影响。该DES是用来确定以下内容:1.每个维护任务的计划时间根据基于X航空公司利比亚维护调度; 2.其中涉及检查的任务数量甲任务和生产率评价所需根据所述调度计划,并通过技术人员进行计划任务,并且每次检查做; 3.总运行通过按照维护计划规划分析的平均时间为每个任务所涉及的时间。研究结果表明,对所有情景进行的,DES模型在较高水平运行,并在某些情况下,出现了服务任务的分解;清楚地表明,工作量因素是在检查期间高。然而,主要发现在这项研究中重点介绍如何没有被已被分配给一般外部条件飞机的检查的实际时间之前完成不同的任务或维护工作包的分解。这使得有必要单独研究工作包每个检查,因为这涉及到DES报告提出了潜在的解决方案,以更有效的规划方法研究这些工作包。通过此功能在现实生活中所提出的方法的适用性,并帮助航空公司应对航空MRO的动态环境。

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