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Mathematical Models for Aircraft Trajectory Design: A Survey

机译:飞机轨迹设计的数学模型:调查

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Air traffic management ensures the safety of flight by optimizing flows and maintaining separation between aircraft. After giving some definitions, some typical feature of aircraft trajectories are presented. Trajectories are objects belonging to spaces with infinite dimensions. The naive way to address such problem is to sample trajectories at some regular points and to create a big vector of positions (and or speeds). In order to manipulate such objects with algorithms, one must reduce the dimension of the search space by using more efficient representations. Some dimension reduction tricks are then presented for which advantages and drawbacks are presented. Then, front propagation approaches are introduced with a focus on Fast Marching Algorithms and Ordered upwind algorithms. An example of application of such algorithm to a real instance of air traffic control problem is also given. When aircraft dynamics have to be included in the model, optimal control approaches are really efficient. We present also some application to aircraft trajectory design. Finally, we introduce some path planning techniques via natural language processing and mathematical programming.
机译:空中交通管理通过优化流动并保持飞机之间的分离来确保飞行安全。在给出一些定义后,提出了飞机轨迹的一些典型特征。轨迹是属于具有无限尺寸的空间的物体。解决此类问题的天真的方法是在某些规则点处采样轨迹,并创建一个位置的大向量(和或速度)。为了用算法操纵此类对象,必须通过使用更高效的表示来减少搜索空间的维度。然后呈现一些尺寸减少技巧,以便提出了哪些优点和缺点。然后,介绍了前沿传播方法,专注于快速行进算法和有序的Upwind算法。还给出了这种算法在空中交通管制问题的真实实例中应用这种算法的示例。当飞机动力学必须包含在模型中时,最佳控制方法非常有效。我们还提供了一些应用于飞机轨迹设计。最后,我们通过自然语言处理和数学编程介绍一些路径规划技术。

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