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The trade-off between taxi time and fuel consumption in airport ground movement

机译:机场地面运动中滑行时间与油耗之间的权衡

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摘要

Environmental issues play an important role across many sectors. This is particularly the case in the air transportation industry. One area which has remained relatively unexplored in this context is the ground movement problem for aircraft on the airport’s surface. Aircraft have to be routed from a gate to a runway and vice versa and a key area of study is whether fuel burn and environmental impact improvements will best result from purely minimising the taxi times or whether it is also important to avoid multiple acceleration phases. This paper presents a newly developed multi-objective approach for analysing the trade-off between taxi time and fuel consumption during taxiing. The approach consists of a combination of a graph-based routing algorithm and a population adaptive immune algorithm to discover different speed profiles of aircraft. Analysis with data from a European hub airport has highlighted the impressive performance of the new approach. Furthermore, it is shown that the trade-off between taxi time and fuel consumption is very sensitive to the fuel-related objective function which is used.
机译:环境问题在许多部门都起着重要作用。在航空运输业中尤其如此。在这种情况下,一个尚未被开发的领域是飞机在飞机表面的地面运动问题。飞机必须从登机口降落到跑道,反之亦然,关键的研究领域是燃油消耗和环境影响的改善是否将仅通过最小化滑行时间而获得最佳效果,或者避免多个加速阶段是否也很重要。本文提出了一种新开发的多目标方法,用于分析滑行时间与滑行油耗之间的权衡。该方法包括基于图的路由算法和种群自适应免疫算法的组合,以发现飞机的不同速度分布。来自欧洲枢纽机场的数据分析突出表明了这种新方法的出色表现。此外,表明滑行时间和燃料消耗之间的折衷对所使用的与燃料有关的目标函数非常敏感。

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