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A simulated annealing approach to 3D strategic aircraft deconfliction based on en-route speed changes under wind and temperature uncertainties

机译:基于风速度变化的3D战略飞机解构的模拟退火方法,风温度不确定性

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摘要

We tackle the problem of minimizing the number of aircraft potential conflicts via speed regulations and taking into account uncertainties on aircraft position due to wind and temperature. The resolution is done at a strategic level, before any of the aircraft has departed. Owing to the complexity of this kind of optimisation problem, a simulated annealing metaheuristic approach is employed. A scenario with four hours of traffic overflying the Spanish (structured, continental) airspace has been selected. Inputted traffic provides routes, Mach profiles (considered to be constant), and altitude profiles as in their flight plans. Probabilistic weather forecasts from an Ensemble Prediction System are employed. Solutions provide constant speed profiles that slightly differ from those in the flight plans. It is shown that the number of conflicts can be significantly reduced by slightly modifying flight plan speeds while not altering the routes, nor the altitudes, both selected by the airspace user. The impact of this resolution strategy in flight efficiency is also analyzed.
机译:我们解决了通过速度法规最小化飞机潜力冲突数量的问题,并考虑到由于风和温度导致的飞机位置的不确定性。在任何飞机离开之前,该决议是在战略层面完成的。由于这种优化问题的复杂性,采用了模拟退火的成分型方法。已经选择了一个有四个小时的交通飞行的场景(结构化,欧陆)空域。输入的流量提供路由,Mach配置文件(被认为是常数),以及在飞行计划中的高度配置文件。采用了来自集合预测系统的概率天气预报。解决方案提供与飞行计划中的恒定速度曲线略有不同。结果表明,通过略微修改飞行计划速度,不能在不改变路由,也可以由空域用户选择的天线,也可以显着减少冲突的数量。还分析了该决议战略在飞行效率方面的影响。

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