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Toward a More Realistic, Cost-Effective, and Greener Ground Movement Through Active Routing: A Multiobjective Shortest Path Approach

机译:通过主动路径实现更现实,更具成本效益和更环保的地面运动:多目标最短路径方法

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This paper draws upon earlier work, which developed a multiobjective speed profile generation framework for unimpeded taxiing aircraft. Here, we deal with how to seamlessly integrate such efficient speed profiles into a holistic decision-making framework. The availability of a set of nondominated unimpeded speed profiles for each taxiway segment, with respect to conflicting objectives, has the potential to significantly impact upon airport ground movement research. More specifically, the routing and scheduling function that was previously based on distance, emphasizing time efficiency, could now be based on richer information embedded within speed profiles, such as the taxiing times along segments, the corresponding fuel consumption, and the associated economic implications. The economic implications are exploited over a day of operation, to take into account cost differences between busier and quieter times of the airport. Therefore, a more cost-effective and tailored decision can be made, respecting the environmental impact. Preliminary results based on the proposed approach show a 9%–50% reduction in time and fuel respectively for two international airports: Zurich and Manchester. The study also suggests that, if the average power setting during the acceleration phase could be lifted from the level suggested by the International Civil Aviation Organization, ground operations may simultaneously improve both time and fuel efficiency. The work described in this paper aims to open up the possibility to move away from the conventional distance-based routing and scheduling to a more comprehensive framework, capturing the multifaceted needs of all stakeholders involved in airport ground operations.
机译:本文借鉴了较早的工作,该工作为无障碍滑行飞机开发了多目标速度剖面生成框架。在这里,我们讨论如何将这样的有效速度配置文件无缝集成到整体决策框架中。相对于相互矛盾的目标,每个滑行道段的一组非主导性无阻碍速度曲线的可用性可能会极大地影响机场地面运动的研究。更具体地说,以前基于距离的,强调时间效率的路由和调度功能现在可以基于速度曲线中嵌入的更丰富的信息,例如沿路段的滑行时间,相应的油耗以及相关的经济影响。在运营一天的时间里就考虑了经济影响,以考虑到机场繁忙和安静时段之间的成本差异。因此,在考虑到环境影响的前提下,可以做出更具成本效益和量身定制的决策。根据建议的方法得出的初步结果表明,两个国际机场(苏黎世和曼彻斯特)的时间和燃油分别减少了9%至50%。研究还表明,如果可以将加速阶段的平均功率设置从国际民用航空组织建议的水平提升,则地面运营可以同时改善时间和燃油效率。本文中描述的工作旨在为从传统的基于距离的路由和调度转变为更全面的框架提供可能性,从而抓住参与机场地面运营的所有利益相关者的多方面需求。

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