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Optimal Airport Surface Traffic Planning Using Mixed-Integer Linear Programming

机译:使用混合整数线性规划的最佳机场地面交通规划

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We describe an ongoing research effort pertaining to the development of a surface traffic automation system that will help controllers to better coordinate surface traffic movements related to arrival and departure traffic. More specifically, we describe the concept for a taxi-planning support tool that aims to optimize the routing and scheduling of airport surface traffic in such a way as to deconflict the taxi plans while optimizing delay, total taxi-time, or some other airport efficiency metric. Certain input parameters related to resource demand, such as the expected landing times and the expected pushback times, are rather difficult to predict accurately. Due to uncertainty in the input data driving the taxi-planning process, the taxi-planning tool is designed such that it produces solutions that are robust to uncertainty. The taxi-planning concept presented herein, which is based on mixed-integer linear programming, is designed such that it is able to adapt to perturbations in these input conditions, as well as to account for failure in the actual execution of surface trajectories. The capabilities of the tool are illustrated in a simple hypothetical airport.
机译:我们描述了正在进行的与地面交通自动化系统开发有关的研究工作,该系统将帮助管制员更好地协调与到达和离开交通有关的地面交通运动。更具体地说,我们描述了出租车计划支持工具的概念,该工具旨在以一种与出租车计划相抵触的方式优化机场地面交通的路线和调度,同时优化延误,总出租车时间或其他一些机场效率指标。与资源需求有关的某些输入参数,例如预期的着陆时间和预期的推回时间,很难准确预测。由于驱动滑行计划过程的输入数据存在不确定性,因此设计了滑行计划工具,以使其产生对不确定性具有鲁棒性的解决方案。本文提出的基于混合整数线性规划的滑行计划概念经过设计,使其能够适应这些输入条件下的扰动,并能解决表面轨迹实际执行中的故障。该工具的功能在一个简单的假设机场中进行了说明。

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