Ant colony system based on receding horizon control for aircraft arrival sequencing and scheduling

Zhi-hui Zhan, Jun Zhang, Yue-jiao Gong
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引用次数: 1

Abstract

The aircraft arrival sequencing and scheduling (ASS) problem is one of the most significant problems in the air traffic control (ATC). This paper makes the first attempt to design an ant colony system (ACS) based approach to solve this NP-hard problem. In order to reduce the computational effort of the optimization process, the receding horizon control (RHC) strategy is integrated into the ACS to divide the optimization process into several sub-processes and solve them one by one. This strategy can reduce the problem scale in each sub-optimization process, resulting in lighter computational effort and higher quality solution for the whole problem. Experiments are conducted to demonstrate the effectiveness and efficiency of the proposed RHC based ACS algorithm for the ASS problem (RHC-ACS-ASS). Simulation results show that the RHC-ACS-ASS not only outperforms the GA based approaches, but also the ACS based approach without using the RHC strategy.
基于后退地平线控制的蚁群系统飞机到达排序与调度
飞机到达排序和调度问题是空中交通管制(ATC)中最重要的问题之一。本文首次尝试设计一种基于蚁群系统(ACS)的方法来解决这一NP-hard问题。为了减少优化过程的计算量,将后退水平控制策略(RHC)集成到ACS中,将优化过程分成若干子过程逐个求解。该策略可以减少每个子优化过程中的问题规模,从而使整个问题的计算量更轻,解的质量更高。通过实验验证了所提出的基于RHC的ACS算法(RHC-ACS-ASS)解决ASS问题的有效性和高效性。仿真结果表明,RHC-ACS- ass不仅优于基于遗传算法的方法,而且优于不使用RHC策略的基于ACS的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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