|
[1] REN G J, ZHANG Z Q, LI Y H. Identification of key
nodes and vulnerability analysis in airport networks with
attention mechanism[J]. Scientific Reports, 2025, 15(1):
39438 .
[2] AKTURK M S, ATAMTURK A, GUREL S. Aircraft
rescheduling with cruise speed control[J]. Operations
Research, 2014, 62(4): 829-845.
[3] WU S , LIU E Z, CAO R, et al. Airline recovery problem
under disruptions: A review[J]. Computers & Operations
Research, 2025, 175: 106915 .
[4] 任轩禾, 史晓红, 张越, 等. 基于改进航班网络的航空货运综合调度恢复模型[J]. 科学技术与工程, 2025, 25
(12): 5240-5248. [REN X H, SHI X H, ZHANG Y, et al.
Integrated air cargo scheduling recovery model based on
improved flight network[J]. Science Technology and
Engineering, 2025, 25(12): 5240-5248.]
[5] 乐美龙, 马彬. 航班运控中飞机和机组快速整合优化恢复[J]. 南京航空航天大学学报, 2015, 47(4): 487-
496. [LE M L, MA B. Rapid integration optimization and
recovery of aircraft and aircrew in flight operation control
[J]. Journal of Nanjing University of Aeronautics and
Astronautics, 2015, 47(4): 487-496.]
[6] JIANG H, REN X. Model of passenger behavior choice
under flight delay based on dynamic reference point[J].
Journal of Air Transport Management, 2019, 75: 51-60.
[7] 江红, 任新惠. 航班延误信息下旅客选择行为模型及实证[J]. 交通运输系统工程与信息, 2018, 18(4): 188-
193, 208. [JIANG H, REN X H. Passenger choice
behavior model and empirical study under flight delay
information[J]. Journal of Transportation Systems
Engineering and Information Technology, 2018, 18(4):
188-193, 208.]
[8] 黄俊生, 广晓平. 航班延误恢复的建模与算法研究[J].交通运输系统工程与信息, 2018, 18(S1): 44- 52.
[HUANG J S, GUANG X P. Study on modeling and
algorithm for delay recovery of flight[J]. Journal of
Transportation Systems Engineering and Information
Technology, 2018, 18(S1): 44-52.]
[9] MARLA L, VAABEN B, BARNHART C. Integrated
disruption management and flight planning to trade off
delays and fuel burn[J]. Transportation Science, 2017, 51
(1): 88-111.
[10] HU Y, XU B, BARD J F, et al. Optimization of multi-fleet
aircraft routing considering passenger transiting under
airline disruption[J]. Computers & Industrial
Engineering, 2015, 80: 132-144.
[11] YANG T, HU Y. Considering passenger preferences in
integrated post disruption recoveries of aircraft and
passengers[J]. Mathematical Problems in Engineering,
2019(1): 9523610.
[12] CADARSO L, VAZE V. Passenger-centric integrated
airline schedule and aircraft recovery[J]. Transportation
Science, 2023, 57(3): 813-837.
[13] 吕涛. 考虑旅客干扰损失与行为的飞机旅客一体化恢复优化研究[D]. 哈尔滨: 哈尔滨工程大学, 2022. [LV
T. Research on the integrated recovery optimization of air
passenger considering passenger disturbance loss and
behavior[D]. Harbin: Harbin Engineering University,
2022.]
[14] RAHIMI E, SHAMSHIRIPOUR A, SHABANPOUR R,
et al. Analysis of transit users' waiting tolerance in
response to unplanned service disruptions[J].
Transportation Research Part D: Transport and
Environment, 2019, 77: 639-653.
|