Kim Kyunghun, Lee Hoyong, Lee Myungjin, Bae Young Hye, Kim Hung Soo, Kim Soojun
Department of Civil Engineering, INHA University, Incheon 22212, Republic of Korea.
Program in Smart City Engineering, INHA University, Incheon 22212, Republic of Korea.
Entropy (Basel). 2023 Aug 14;25(8):1209. doi: 10.3390/e25081209.
Airlines provide one of the most popular and important transportation services for passengers. While the importance of the airline industry is rising, flight cancellations are also increasing due to abnormal weather factors, such as rainfall and wind speed. Although previous studies on cancellations due to weather factors considered both aircraft and weather factors concurrently, the complex network studies only treated the aircraft factor with a single-layer network. Therefore, the aim of this study was to apply a multilayer complex network (MCN) method that incorporated three different factors, namely, aircraft, rainfall, and wind speed, to investigate aircraft cancellations at 14 airports in the Republic of Korea. The results showed that rainfall had a greater impact on aircraft cancellations compared with wind speed. To find out the most important node in the cancellation, we applied centrality analysis based on information entropy. According to the centrality analysis, Jeju Airport was identified as the most influential node since it has a high demand for aircraft. Also, we showed that characteristics and factors of aircraft cancellation should be appropriately defined by links in the MCN. Furthermore, we verified the applicability of the MCN method in the fields of aviation and meteorology. It is expected that the suggested methodology in this study can help to understand aircraft cancellation due to weather factors.
航空公司为乘客提供了最受欢迎且最重要的交通服务之一。尽管航空业的重要性在不断提升,但由于降雨和风速等异常天气因素,航班取消的情况也在增加。虽然先前关于天气因素导致航班取消的研究同时考虑了飞机和天气因素,但复杂网络研究仅用单层网络处理飞机因素。因此,本研究的目的是应用一种包含飞机、降雨和风速这三个不同因素的多层复杂网络(MCN)方法,来调查韩国14个机场的航班取消情况。结果表明,与风速相比,降雨对航班取消的影响更大。为了找出取消航班中最重要的节点,我们基于信息熵进行了中心性分析。根据中心性分析,济州机场被确定为最具影响力的节点,因为它对飞机的需求量很大。此外,我们表明航班取消的特征和因素应由MCN中的链接适当定义。此外,我们验证了MCN方法在航空和气象领域的适用性。预计本研究中提出的方法有助于理解天气因素导致的航班取消情况。