一种改进的基于元胞自动机的飞机着陆实时调度算法

Yueshuai He, Kaiquan Cai, Yongliang Li, Mingming Xiao
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引用次数: 7

摘要

在空中交通管理领域,飞机着陆调度对保障终端区飞行安全、高效运行起着重要作用。由于ALS问题是一个多约束和大规模的问题,现有的算法很难有效地处理它。本文首先介绍了ALS问题的数学模型和用于模拟飞机着陆过程的一维元胞自动机模型。然后,基于上述两种模型和实际终端区场景,提出了一种改进的二维元胞自动机算法来解决实时ALS问题。与以往的ALS算法相比,改进算法不仅注重飞行速度,而且注重飞行实际着陆路线,能更准确地模拟实际飞机着陆过程,提供可行的飞机着陆顺序。利用成都双流机场的场景和相应的航迹记录进行实证研究,结果表明本文提出的算法优于现有算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Improved Cellular-Automaton-Based Algorithm for Real-Time Aircraft Landing Scheduling
Aircraft Landing Scheduling (ALS) plays an important role in ensuring safety and efficiency of flight operation in terminal area in the air traffic management domain. Since ALS problem is multi-constraint and large-scale, existing algorithms can hardly deal with it efficiently. This paper firstly introduces the mathematic model of ALS problem and the 1D Cellular-Automaton model for simulating aircraft landing process. Then, based on above two models and a practice terminal area scenario, an improved 2D-Cellular-Automaton-based algorithm is presented for solving real-time ALS problem. Compared with previous approaches for ALS, the improved algorithm puts emphasis on not only flight speed, but also flight actual landing route, which can more exactly simulate practical aircraft landing process and provide feasible aircraft landing sequence. Empirical studies, using the scenario of Chengdu Shuangliu Airport and corresponding records of flight tracks, show that our proposed algorithm outperforms existing ones.
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