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Optimal Aircraft Metering during Space Launches

机译:太空发射期间的最佳飞机计量

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During space launches, aircraft are rerouted around large, static columns of restricted airspace. These restrictions are often active for hours at a time and result in many rerouted aircraft. Recent research has focused on moving from static restrictions to dynamic restrictions that can adapt to the launch trajectory and vehicle health to limit airspace disruption. Previously, the problem was framed as a Markov decision process and solved using dynamic programming for heading reroutes. This method preforms well for aircraft flying near land with constant air traffic communications. In contrast, oceanic flights are routed via waypoints and pilots speak with air traffic control much less often. This paper suggests rerouting oceanic flights by metering them between waypoints. This method results in less airspace disruption while maintaining safety.
机译:在太空发射期间,飞机会绕着受限空域的大型静态柱子改道。这些限制通常一次只能运行数小时,从而导致许多飞机改道。最近的研究集中于从静态限制转换为动态限制,以适应发射轨迹和飞行器的健康状况,以限制空域干扰。以前,该问题被构造为马尔可夫决策过程,并使用动态编程进行航向改航来解决。这种方法非常适用于在空中连续进行空中交通通信的飞机。相比之下,海洋飞行是通过航路点进行的,而飞行员在进行空中交通管制时说话的频率要低得多。本文建议通过对航路点之间的距离进行计量来改变航线路线。这种方法在保持安全性的同时,减少了对空域的干扰。

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