Abstract
Purpose
To reduce the time of flight rescheduling, reduce the total delay cost of all flights to a minimum and put forward more references for passengers to take flights, this paper aims to mainly study the recovery of flights affected by snow disaster within the minimum delay time.
Design/methodology/approach
The temporal and spatial network flight recovery model is used to optimize all flights of various types of aircraft, and the adjusted flight schedule based on minute delay time is obtained. In addition, for passenger travel flights, the impact of passenger delay cost on the total delay time is minimized as an objective function to calculate the passenger delay cost.
Findings
In this paper, the actual departure time of aircraft is sorted in ascending order. Up to five planes can take off from the runway every 5 min, and the 10-min decision interval is successively delayed. The actual arrival time is sorted by the same method and the sequential delay is calculated to obtain the adjusted flight schedule. As a result, it takes less time to reschedule flights.
Originality/value
In this paper, heuristic algorithm is used to adjust the schedule of delayed flights flexibly, which is convenient for manual modification. This decision method has good robustness and can partially adjust the interrupted flights without affecting other scheduled flights while maintaining the stable operation of the whole plan, greatly improving the efficiency of civil aviation operations and reducing the impact of flight delays.
Reference14 articles.
1. An integrated decision support tool for airlines schedule recovery during irregular operations;European Journal of Operational Research,2008
2. A grasp for aircraft routing in response to groundings and delays;Journal of Combinatorial Optimization,1997
3. Role of artificial intelligence in cloud computing, IoT and SDN reliability and scalability issues Belgaum international journal of electrical and computer engineering (IJECE);International Journal of Electrical and Computer Engineering,2021
4. A large neighbour-hood search heuristic for the aircraft and passenger recovery problem;4OR,2011
5. Dynamic flight routing using internet of things framework;International Journal of Computers & Technology,2020
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