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A Linear Programming Approach to the Development of Contrail Reduction Strategies Satisfying Operationally Feasible Constraints

机译:满足操作可行约束的变轨减少策略开发的线性规划方法

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摘要

A class of strategies has been proposed to reduce contrail formation in the United States airspace. A 3D grid based on weather data and the cruising altitude level of aircraft is adjusted to avoid the persistent contrail potential area with the consideration to fuel-efficiency. In this paper, the authors introduce a contrail avoidance strategy on 3D grid by considering additional operationally feasible constraints from an air traffic controller's aspect. First, shifting too many aircraft to the same cruising level will make the miles-in-trail at this level smaller than the safety separation threshold. Furthermore, the high density of aircraft at one cruising level may exceed the workload for the traffic controller. Therefore, in our new model we restrict the number of total aircraft at each level. Second, the aircraft count variation for successive intervals cannot be too drastic since the workload to manage climbing/descending aircraft is much larger than managing cruising aircraft. The contrail reduction is formulated as an integer-programming problem and the problem is shown to have the property of total unimodularity. Solving the corresponding relaxed linear programming with the simplex method provides an optimal and integral solution to the problem. Simulation results are provided to illustrate the methodology.
机译:已经提出了一类策略来减少美国领空中的轨迹转换。调整了基于天气数据和飞机巡航高度水平的3D网格,以避免考虑燃油效率而持续存在轨迹转换潜在区域。在本文中,作者从空中交通管制员的角度考虑了其他在操作上可行的约束条件,从而介绍了3D网格上的防撞策略。首先,将过多的飞机转移到相同的巡航级别将使该级别的飞行里程小于安全间隔阈值。此外,在一个巡航级别的高密度飞机可能会超过交通管制员的工作量。因此,在我们的新模型中,我们限制了每个级别的飞机总数。第二,连续间隔的飞机数量变化不能太大,因为管理爬升/下降飞机的工作量比管理巡航飞机的工作量大得多。轨迹转换被公式化为整数编程问题,并且该问题被证明具有总单模性。用单纯形法求解相应的松弛线性规划可为该问题提供最佳的整体解决方案。提供仿真结果以说明该方法。

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