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Flight operations recovery: New approaches considering passenger recovery

机译:飞行运营恢复:考虑乘客恢复的新方法

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The sources of disruption to airline schedules are many, including crew absences, mechanical failures, and bad weather. When these unexpected events occur, airlines recover by replanning their operations. In this paper, we present airline schedule recovery models and algorithms that simultaneously develop recovery plans for aircraft, crews, and passengers by determining which flight leg departures to postpone and which to cancel. The objective is to minimize jointly airline operating costs and estimated passenger delay and disruption costs. This objective works to balance these costs, potentially increasing customer retention and loyalty, and improving airline profitability. Using an Airline Operations Control simulator that we have developed, we simulate several days of operations, using passenger and flight information from a major US airline. We demonstrate that our decision models can be applied in a real-time decision-making environment, and that decisions from our models can potentially reduce passenger arrival delays noticeably, without increasing operating costs.
机译:造成航班时刻表中断的原因很多,包括机组人员缺席,机械故障和恶劣天气。当这些意外事件发生时,航空公司会通过重新计划其运营来恢复。在本文中,我们介绍了航空公司的航班时刻表恢复模型和算法,这些模型和算法可通过确定哪些航程航程推迟起飞和取消而同时制定飞机,机组人员和乘客的恢复计划。目的是最大程度地减少航空公司的运营成本以及估计的乘客延误和中断成本。该目标旨在平衡这些成本,潜在地增加客户保留率和忠诚度并提高航空公司的盈利能力。使用我们开发的航空公司运营控制模拟器,我们可以使用美国一家主要航空公司的乘客和航班信息来模拟几天的运营。我们证明了我们的决策模型可以应用于实时决策环境中,并且我们模型中的决策可以潜在地显着减少乘客的到港延误,而不会增加运营成本。

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