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The design and simulation of an autonomous system for aircraft maintenance scheduling

机译:飞机维修计划自主系统的设计与仿真

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Operational support is a key issue for aircraft maintenance, which aims to improve operational efficiency and reduce operating costs under the premise of ensuring flight safety. Although many works have emerged to achieve this aim, they mostly address the concept of maintenance systems, the relationship between stakeholders and the loop of maintenance information separately. Hence, the cooperation between stakeholders could be impeded especially when urgent decisions should be made, relying on historical data and real-time data. In this paper, we propose an innovative design of an autonomous system supporting the automatic decision-making for maintenance scheduling. The design starts from the proposition of the analysis framework, to concept formulation of the system, to information transitional level interface, and ends with an instance of system module interactions. The underlying architecture illustrates the high-level fusion of technical and business drives; optimizes strategies and plans with regard to maintenance costs, service level and reliability. An agent-based simulation system is developed as a proof to illustrate the feasibility of the system principle and algorithms. Furthermore, the simulation experiment analyzing the impact of maintenance sequence strategies on maintenance costs and service level has demonstrated the algorithm functionality and the feasibility of the proposed approach.
机译:运营支持是飞机维护的关键问题,其目的是在确保飞行安全的前提下提高运营效率并降低运营成本。尽管已经出现了许多实现该目标的工作,但它们大多涉及维护系统的概念,利益相关者之间的关系以及维护信息循环。因此,特别是当应该依靠历史数据和实时数据做出紧急决定时,利益相关者之间的合作可能会受到阻碍。在本文中,我们提出了一种创新的自主系统设计,该系统支持维护计划的自动决策。设计从分析框架的命题开始,到系统的概念制定,再到信息过渡级别的接口,最后以系统模块交互的实例结束。基础架构说明了技术和业务驱动器的高层融合;在维护成本,服务水平和可靠性方面优化策略和计划。开发了一个基于代理的仿真系统作为证明来说明系统原理和算法的可行性。此外,通过仿真实验分析维护顺序策略对维护成本和服务水平的影响,证明了算法的功能性和所提方法的可行性。

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