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Runway Assignments That Minimize Terminal Airspace and Airport Surface Emissions

机译:减少跑道空域和机场地面排放的跑道分配

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Air traffic operations at and around major airports in the United States are in need of improvement From the perspective of arrivals, when one or more runways are in great demand, unnecessary delay and emissions occur during peak periods at major airports while other runways at the same airport are operating under capacity. The primary cause of this imbalance in runway utilization is that traffic flow into and out of terminal areas is asymmetric (as a result of airline scheduling practices) and arrivals are typically assigned to the runway nearest the fix through which they enter the terminal area. From the perspective of departures, delays and emissions are incurred because arrivals take precedence over departures with regard to the utilization of runways (despite the absence of binding safety constraints) and because arrival trajectories often include level segments that ensure "procedural separation" from arriving traffic while planes are not allowed to climb unrestricted along the most direct path to their destination. This paper presents an optimization model for simultaneously assigning aircraft to runways and scheduling the arrival and departure operations on these runways such that the total emissions produced in the terminal area and on the airport surface are minimized. Model constraints include such real-world considerations as the minimum separation required between successive aircraft and the precedence relationships that aircraft flying a common route take. An analysis of simulation results indicates that implementation of this model could result in as much as a 30% reduction in arrival emissions with a corresponding 3% reduction in departure emissions.
机译:美国主要机场及其周围的空中交通运营需要改进从到达的角度来看,当一条或多条跑道需求量很大时,在主要机场的高峰时段会出现不必要的延误和排放,而其他跑道在同一时刻机场运营能力不足。跑道利用率不平衡的主要原因是,进出终端区的交通流量不对称(由于航空公司的调度惯例),通常将到达地点分配到离进站区最接近的跑道。从离场角度来看,之所以会产生延误和排放,是因为在跑道的使用方面,尽管到达场次要高于离场场次(尽管没有约束性的安全约束),并且由于到达轨迹通常包括确保“程序上隔离”与到达交通的路段,同时不允许飞机沿最直接的路径无限制地爬升到目的地。本文提出了一种优化模型,用于同时将飞机分配给跑道并安排这些跑道上的进场和离场操作,以使在终端区和机场表面产生的总排放量最小。模型约束包括现实世界中的考虑因素,例如连续飞机之间所需的最小间隔以及飞行同一条航线的飞机之间的优先关系。对模拟结果的分析表明,采用此模型可以使到达排放量减少多达30%,而离场排放量则减少了3%。

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