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Modelling and simulating airport surface operations with gate conflicts

机译:建模和模拟带有登机门冲突的机场地面运营

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The Surface Operations Simulator and Scheduler (SOSS) is a fast-time simulation of the airport surface used to rapidly develop and test new surface scheduling concepts. Gate conflicts present a challenge for surface scheduling. A late departure pushback or early arrival sharing the same gate can cause a gate conflict, which if left unmanaged, can lead to surface gridlock. Surface scheduling concepts that meter departures at their gates can increase the likelihood of gate conflicts. In real operations, hardstand areas are used to temporality park aircraft out of the way to avoid gate conflicts. New SOSS models and functionality for hardstand operations were developed to simulate gate conflict management approaches using hardstands to temporarily park either the arrival or departure out of the way of the other. Four gate conflict management approaches were simulated with surface scheduling and their effects on surface operations were compared. The four gate conflict management approaches each allowed a unique subset of resolution actions including early departure pushback, sending the departure to the hardstand, and sending the arrival to the hardstand. The gate conflict management approaches allowing arrivals to be sent to the hardstand were found to be most successful in resolving the gate conflicts and maintaining scheduler performance measured by takeoff time predictability.
机译:水面操作模拟器和调度程序(SOSS)是对机场水面的快速仿真,用于快速开发和测试新的水面调度概念。门冲突对表面调度提出了挑战。延迟起飞或提前到达共享同一登机口会导致登机口冲突,如果不加以控制,则可能导致地面陷入僵局。在其登机口计量离场的表面调度概念可能会增加登机口冲突的可能性。在实际操作中,硬地区域用于临时停放飞机以避免登机口冲突。开发了新的SOSS模型和用于硬汉操作的功能,以模拟使用硬汉暂时将到达或离开对方的方式停放的门冲突管理方法。通过地面调度模拟了四种门冲突管理方法,并比较了它们对地面操作的影响。四种门冲突管理方法各自允许解决方案动作的唯一子集,包括提前撤离推回,将撤离发送到硬台和将到达发送到硬台。发现门禁冲突管理方法可以最有效地解决门禁冲突并保持以起飞时间可预测性衡量的调度程序性能,该方法允许将到达信息发送到硬质架。

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