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Multi-objective routing and scheduling for airport ground movement

机译:机场地面运动的多目标路由和安排

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Recent research on airport ground movement introduced an Active Routing framework to support multi-objective trajectory-based operations. This results in edges in the airport taxiway graph having multiple costs such as taxi time, fuel consumption and emissions. In such a graph, multiple edges exist between two nodes reflecting different trade-offs among the multiple costs. Aircraft will have to choose the most efficient edge from multiple edges in order to traverse from one node to another respecting various operational constraints. In this paper, we introduce a multi-objective routing and scheduling algorithm based on the enumerative approach that can be used to solve such a multi-objective multi-graph problem. Results using the proposed algorithm for a range of international airports are presented. Compared with other routing and scheduling algorithms, the proposed algorithm can find a representative set of optimal or near optimal solutions in a single run when the sequence of aircraft is fixed. In order to accelerate the search, heuristic functions and a preference-based approach are introduced. We analyse the performance of different approaches and discuss how the structure of the multi-graph affects computational complexity and quality of solutions.
机译:最近关于机场地面运动的研究推出了一个主动路由框架,以支持基于多目标轨迹的操作。这导致在机场滑行道图中的边缘,具有多种成本,例如出租车时间,燃料消耗和排放。在这样的图中,在两个节点之间存在多个边缘,反映多种成本之间的不同权衡。飞机必须从多个边缘中选择最有效的边缘,以便从一个节点遍历到另一个致力于各种操作约束。在本文中,我们介绍了一种基于枚举方法的多目标路由和调度算法,该枚举方法可用于解决这种多目标多图形问题。提出了使用该算法的一系列国际机场的结果。与其他路由和调度算法相比,当飞机序列固定时,所提出的算法可以在单个运行中找到代表性的最佳或接近最佳解决方案。为了加速搜索,介绍了启发式功能和基于偏好的方法。我们分析了不同方法的性能,并讨论多图的结构如何影响解决方案的计算复杂性和质量。

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