一种用于冲突解决的燃料最优和减少控制器工作量的优化模型

A. Vela, S. Solak, E. Feron, K. Feigh, W. Singhose, J. Clarke
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引用次数: 21

摘要

尽管存在几种自动空中交通冲突解决算法,但仍需要考虑空中交通管制员工作量的公式。本文提出了一种控制器负载约束参数化建模的算法。为此,我们首先建立了一个用于一般冲突解决的整数规划模型,该模型强调燃料成本的最小化,并在接近实时的情况下运行。然后,基于该模型开发了一个参数化过程,以考虑控制器工作负载限制。描述了参数化方法的两个版本,并给出了计算结果。这证明了这两种公式都可以用来捕获广泛的可能的控制器动作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A fuel optimal and reduced controller workload optimization model for conflict resolution
Despite the existence of several automated air traffic conflict resolution algorithms, there is a need for formulations that account for air traffic controller workload. This paper presents such an algorithm with controller workload constraints modeled parametrically. To this end, we first develop an integer programming model for general conflict resolution, which emphasizes the minimization of fuel costs, and runs in near real-time. A parametric procedure based on this model is then developed to consider controller workload limitations. Two versions of the parametric approach are described, along with computational results. It is demonstrated that both formulations can be used to capture a broad range of possible controller actions.
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