Jarry Gabriel, Delahaye Daniel, Feron Eric
ENAC, Université de Toulouse, 7 Avenue Edouard Belin, 31400 Toulouse, France.
King Abdullah University of Science and Technology, Division of Electrical, Computer and Mathematical Science and Engineering, Thuwal 23955, Saudi Arabia.
Transp Res Interdiscip Perspect. 2021 Mar;9:100327. doi: 10.1016/j.trip.2021.100327. Epub 2021 Feb 18.
During the COVID-19 period and particularly during lockdown, deviations from nominal operations have shown to become more frequent. To confirm this observation this paper proposes to evaluate the impact of COVID-19, and more generally of crises that lead to a sharp drop in traffic, on the pilot/controller system, especially during the critical approach and landing phases. To study the influence of this type of crisis on flight operations at Charles De Gaulle airport, an existing energy atypicality metric is applied on a reference period before COVID-19 and compared to the COVID-19 period. Whereas the traffic at Charles De Gaulle airport has decreased by around 90% on April 2020, the obtained statistics underlined an increase in the atypical flight ratio of around 50%. This trend can be explained in part by the appearance of glide interceptions from above as a result of trajectory shortenings, and an increase in the proportion of high speed approaches.
在新冠疫情期间,尤其是在封锁期间,偏离正常运营的情况变得更加频繁。为了证实这一观察结果,本文提议评估新冠疫情,以及更普遍地导致交通流量急剧下降的危机,对飞行员/管制员系统的影响,特别是在关键进近和着陆阶段。为了研究这类危机对戴高乐机场飞行运营的影响,在新冠疫情之前的一个参考时期应用了现有的能量非典型性指标,并与新冠疫情期间进行比较。2020年4月戴高乐机场的交通流量减少了约90%,而获得的统计数据显示非典型飞行比例增加了约50%。这种趋势部分可以通过轨迹缩短导致的从上方进行下滑拦截的出现,以及高速进近比例的增加来解释。