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An empirically grounded agent based simulator for the air traffic management in the SESAR scenario

机译:SESAR场景中基于经验的基于代理的模拟器用于空中交通管理

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摘要

In this paper we present a simulator allowing to perform policy experiments relative to the air traffic management. Different SESAR solutions can be implemented in the model to see the reaction of the different stakeholders as well as other relevant metrics (delay, safety, etc). The model describes both the strategic phase associated to the planning of the flight trajectories and the tactical modifications occurring in the en-route phase. An implementation of the model is available as an open-source software and is freely accessible by any user. More specifically, different procedures related to business trajectories and free-routing are tested and we illustrate the capabilities of the model on an airspace which implements these concepts. After performing numerical simulations with the model, we show that in a free-routing scenario the controllers perform less operations but the conflicts are dispersed over a larger portion of the airspace. This can potentially increase the complexity of conflict detection and resolution for controllers. In order to investigate this specific aspect, we consider some metrics used to measure traffic complexity. We first show that in non-free-routing situations our simulator deals with complexity in a way similar to what humans would do. This allows us to be confident that the results of our numerical simulations relative to the free-routing can reasonably forecast how human controllers would behave in this new situation. Specifically, our numerical simulations show that most of the complexity metrics decrease with free-routing, while the few metrics which increase are all linked to the flight level changes. This is a non-trivial result since intuitively the complexity should increase with free-routing because of problematic geometries and more dispersed conflicts over the airspace.
机译:在本文中,我们提供了一个模拟器,可以执行与空中交通管理相关的政策实验。可以在模型中实现不同的SESAR解决方案,以查看不同利益相关者的反应以及其他相关指标(延迟,安全性等)。该模型既描述了与飞行轨迹计划相关的战略阶段,也描述了在航路阶段发生的战术修改。该模型的实现可作为开源软件获得,任何用户均可免费访问。更具体地说,测试了与业务轨迹和自由路由有关的不同程序,我们在实现这些概念的空域上说明了该模型的功能。在对该模型进行数值模拟后,我们表明在自由路由情况下,控制器执行的操作较少,但冲突分散在较大的空域中。这可能会增加控制器冲突检测和解决的复杂性。为了调查此特定方面,我们考虑了一些用于衡量流量复杂性的指标。我们首先表明,在非自由路由情况下,我们的模拟器以类似于人类的方式处理复杂性。这使我们确信,与自由路由有关的数值模拟结果可以合理地预测人类控制器在这种新情况下的行为。具体来说,我们的数值模拟表明,大多数复杂性指标随自由航线而降低,而少数增加的指标都与飞行高度变化有关。这是不平凡的结果,因为从直觉上讲,由于存在问题的几何形状和空域上更分散的冲突,复杂性应随自由路由而增加。

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