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International Journal of Frontiers in Engineering Technology, 2023, 5(3); doi: 10.25236/IJFET.2023.050302.

Simulation and optimal solution analysis of airport check-in system

Author(s)

Yuchen Yang1, Yang Yang2, Minmin Yu1, Xinyu Zhu1, Xingyue Du1

Corresponding Author:
Yuchen Yang
Affiliation(s)

1Taihu Laboratory of Deepsea Technological Science, Wuxi, Jiangsu, 214000, China

2China Ship Science Research Center, Wuxi, Jiangsu, 214000, China

Abstract

In this paper, Witness software is used to simulate the check-in process of airport terminal. By setting the customer walking time, the number of check-in machines and artificial counters, the percentage of ordinary passengers and business passengers and other values, the customer waiting time and check-in time are simulated visually, and the customer satisfaction of different groups is analyzed. The optimized data including the number of check-in machines and counters are obtained through software. Finally, this paper analyzes the optimization scheme of airport check-in system according to satisfaction and cost.

Keywords

airport, check-in system, simulation, Witness software

Cite This Paper

Yuchen Yang, Yang Yang, Minmin Yu, Xinyu Zhu, Xingyue Du. Simulation and optimal solution analysis of airport check-in system. International Journal of Frontiers in Engineering Technology (2023), Vol. 5, Issue 3: 6-10. https://doi.org/10.25236/IJFET.2023.050302.

References

[1] Li Y., & Li R. (2008). Simulation and Optimization of the Power Station Coal-Fired Logistics System Based on Witness Simulation Software. Workshop on Power Electronics & Intelligent Transportation System.

[2] Waller A. (2012). WITNESS simulation software. Winter Simulation Conference. 

[3] Filip Florina-Cristina, Mebrahtu Habtom, Marascu-Klein Vladimir & Deaky Bogdan. (2018). Method for Optimization Production Systems by Computer Aided Modeling and Simulation. Journal of Electrical and Electronics Engineering (1). 

[4] “FBA Flight Tracking and History—FlightAware.” https://flightaware.com/live/flight/FBA (accessed Mar. 08, 2023).