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A real-time active routing approach via a database for airport surface movement

机译:通过数据库进行机场地面移动的实时实时路由方法

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摘要

Airports face challenges due to the increasing volume of air traffic and tighter environmental restrictions which result in a need to actively integrate speed profiles into conventional routing and scheduling procedure. However, only until very recently, the research on airport ground movement has started to take into account such a speed profile optimisation problem actively so that not only time efficiency but also fuel saving and decrease in airport emissions can be achieved at the same time. It is envisioned that the realism of planning could also be improved through speed profiles. However, due to the multi-objective nature of the problem and complexity of the investigated models (objective functions), the existing speed profile optimisation approach features high computational demand and is not suitable for an on-line application. In order to make this approach more competitive for real-world application and to meet limits imposed by International Civil Aviation Organization for on-line decision time, udthis paper introduces a pre-computed database acting as a middleware to effectively separate the planning (routing and scheduling) module and the speed profile generation module. Employing a database not only circumvents duplicative optimisation for the same taxiway segments, but also completely avoids the computation of speed profiles during the on-line decision support owing a great deal to newly proposed database initialization procedures. Moreover, the added layer of database facilitates, in the future, more complex and realistic models to be considered in the speed profile generation module, without sacrificing on-line decision time. The experimental results carried out using data from a major European hub show that the proposed approach is promising in speeding up the search process.
机译:由于空中交通量的增加和更严格的环境限制,机场面临挑战,这导致需要将速度配置文件主动整合到传统的航线和调度程序中。但是,直到最近,对机场地面运动的研究才开始积极考虑这种速度分布优化问题,因此,不仅可以同时实现时间效率,而且可以节省燃料并减少机场排放物。可以预见的是,通过速度曲线也可以改善规划的现实性。但是,由于问题的多目标性质和所研究模型(目标函数)的复杂性,现有的速度曲线优化方法具有较高的计算需求,因此不适合在线应用。为了使这种方法在实际应用中更具竞争力,并满足国际民航组织对在线决策时间施加的限制,本文引入了一种预先计算的数据库作为中间件,以有效地分离计划(路由)。和调度)模块和速度配置文件生成模块。使用数据库不仅避免了对相同滑行道路段的重复优化,而且由于新提出的数据库初始化程序很多,因此完全避免了在线决策支持期间速度分布的计算。此外,将来增加的数据库层有助于在速度配置文件生成模块中考虑更复杂,更现实的模型,而无需牺牲在线决策时间。使用来自欧洲主要枢纽的数据进行的实验结果表明,提出的方法有望加快搜索过程。

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