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An Optimization Framework for Terminal Sequencing and Scheduling: The Single Runway Case

机译:终端排序和调度优化框架:单次跑道案例

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This paper addresses the static aircraft sequencing problem over the entire terminal maneuvering area (TMA) under a mixed-mode, single runway operating scenario. In contrast with existing approaches that only consider the runway as a bottleneck, our approach optimizes flight sequences and schedules by taking into account the configuration and associated constraints of the entire TMA region. This problem is formulated as a 0-1 mixed-integer linear programming problem. Efficient preprocessing and variable fixing strategies, along with several classes of valid inequalities, are derived to tighten the continuous relaxation of the problem. Computational results on illustrative examples show the overall delay in the system can be reduced by nearly a 30 % margin over the default FCFS policy and by nearly 10 % over the runway sequencing policy.
机译:本文在混合模式下,在混合模式下,在混合模式下,在整个终端操纵区域(TMA)下的静态飞机排序问题解决了。相反,只有仅将跑道作为瓶颈视为瓶颈的现有方法,我们的方法通过考虑整个TMA区域的配置和相关的约束来优化飞行序列和计划。该问题被制定为0-1混合整数线性编程问题。有效的预处理和可变定影策略以及几类有效不等式,旨在收紧问题的不断放松。对说明性示例的计算结果显示系统的总延迟可以通过默认的FCFS策略减少近30%的余量,并且在跑道排序策略上近10%。

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