Discrete Choice Model Applications for Air Passenger Airport Choices: A Literature Review

Mitsuyoshi Fukushi, Felipe Delgado, Sebastián Raveau
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Abstract

Airport development is a critical factor for regional growth, improving connectivity, and stimulating economic growth. Considering the complexity of planning and policy making in this area, multiple models and frameworks have been introduced to support decision-making processes. Among these, Discrete Choice Models (DCM) stand out for their capacity to project market flows, assess the validity and benefits of implementing airport modifications, tailor policies, improve the operations’ service level, and boost revenues. Given their extensive use and importance, a thorough review of DCM applications within the context of air transportation is both timely and necessary. This review organizes and evaluates the use of DCMs in air transport research. Both descriptive and predictive applications of DCMs are analyzed, focusing on choices related to airports and related levels, such as access mode and airline decisions. Each reviewed study is classified based on the type of model used, application context, data characteristics, employed variables, and methodological contributions. Through this analysis, six prevailing gaps are identified in the current state of DCM application in air transportation: improve data quality, enhance models with detailed trip and passenger information, explore advanced modeling techniques, incorporate general correlation and substitution structures, consider non-compensatory decision-making processes, and extend applications to new geographic and temporal contexts.
离散选择模型在航空旅客机场选择中的应用:文献综述
机场发展是区域增长、改善连通性和刺激经济增长的关键因素。考虑到这一领域规划和政策制定的复杂性,人们引入了多种模型和框架来支持决策过程。其中,离散选择模型(DCM)在预测市场流量、评估实施机场改造的有效性和效益、定制政策、提高运营服务水平和增加收入等方面表现突出。鉴于 DCM 的广泛应用和重要性,对 DCM 在航空运输领域的应用进行全面回顾既及时又必要。本综述对 DCM 在航空运输研究中的应用进行了整理和评估。对 DCM 的描述性和预测性应用进行了分析,重点关注与机场相关的选择和相关层面,如进入模式和航空公司决策。根据所使用模型的类型、应用环境、数据特征、采用的变量和方法论贡献,对所审查的每项研究进行了分类。通过分析,确定了 DCM 在航空运输应用现状中的六个普遍差距:提高数据质量、利用详细的行程和乘客信息增强模型、探索先进的建模技术、纳入一般相关性和替代结构、考虑非补偿性决策过程,以及将应用扩展到新的地理和时间背景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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