A multi-objective fuzzy optimization model for multi-type aircraft flight scheduling problem

This study proposes a multi-objective optimization model for an Aircraft Flight Scheduling Problem (AFSP) for assigning a set of aircraft located at different airports to conduct all flight trips. The proposed model features each flight trip with its own special aircraft type and fuzzy flight time. ...

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Veröffentlicht in:Transport (Vilnius, Lithuania) Jg. 39; H. 4; S. 313 - 322
Hauptverfasser: Wei, Ming, Yang, Shangwen, Wu, Wei, Sun, Bo
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Vilnius Vilnius Gediminas Technical University 31.12.2024
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ISSN:1648-4142, 1648-3480
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Abstract This study proposes a multi-objective optimization model for an Aircraft Flight Scheduling Problem (AFSP) for assigning a set of aircraft located at different airports to conduct all flight trips. The proposed model features each flight trip with its own special aircraft type and fuzzy flight time. Moreover, a flight trip with a small aircraft being covered by a larger one is fully accounted for in the model. The model can effectively reduce the number of aircraft and achieve the minimum total idle time for adjacent flight trips covered by an aircraft. A novel heuristic algorithm based on the Non-dominated Sorting Genetic Algorithm (NSGA-II) is further designed to yield meta-optimal solutions efficiently for such a Non-deterministic Polynomial (NP) problem. Finally, a real airline scheduling example in China is conducted using CPLEX and the proposed heuristic algorithm to evaluate the difference between the proposed and traditional models. The results show that the given scheduling problem effectively enhances the operational efficiency of the aircraft fleet. First published online 28 January 2025
AbstractList This study proposes a multi-objective optimization model for an Aircraft Flight Scheduling Problem (AFSP) for assigning a set of aircraft located at different airports to conduct all flight trips. The proposed model features each flight trip with its own special aircraft type and fuzzy flight time. Moreover, a flight trip with a small aircraft being covered by a larger one is fully accounted for in the model. The model can effectively reduce the number of aircraft and achieve the minimum total idle time for adjacent flight trips covered by an aircraft. A novel heuristic algorithm based on the Non-dominated Sorting Genetic Algorithm (NSGA-II) is further designed to yield meta-optimal solutions efficiently for such a Non-deterministic Polynomial (NP) problem. Finally, a real airline scheduling example in China is conducted using CPLEX and the proposed heuristic algorithm to evaluate the difference between the proposed and traditional models. The results show that the given scheduling problem effectively enhances the operational efficiency of the aircraft fleet. First published online 28 January 2025
This study proposes a multi-objective optimization model for an Aircraft Flight Scheduling Problem (AFSP) for assigning a set of aircraft located at different airports to conduct all flight trips. The proposed model features each flight trip with its own special aircraft type and fuzzy flight time. Moreover, a flight trip with a small aircraft being covered by a larger one is fully accounted for in the model. The model can effectively reduce the number of aircraft and achieve the minimum total idle time for adjacent flight trips covered by an aircraft. A novel heuristic algorithm based on the Non-dominated Sorting Genetic Algorithm (NSGA-II) is further designed to yield meta-optimal solutions efficiently for such a Non-deterministic Polynomial (NP) problem. Finally, a real airline scheduling example in China is conducted using CPLEX and the proposed heuristic algorithm to evaluate the difference between the proposed and traditional models. The results show that the given scheduling problem effectively enhances the operational efficiency of the aircraft fleet.
Author Wu, Wei
Sun, Bo
Yang, Shangwen
Wei, Ming
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  fullname: Wei, Ming
  organization: School of Air Traffic Management, Civil Aviation University of China, Tianjin, China; Nantong Research Institute for Advanced Communication Technologies, Nantong, China; School of Transportation, Nantong University, Nantong, China
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  givenname: Shangwen
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  organization: Nanjing Research Institute of Electronics Engineering, Nanjing, China
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  fullname: Wu, Wei
  organization: School of Air Traffic Management, Civil Aviation University of China, Tianjin, China
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  surname: Sun
  fullname: Sun, Bo
  organization: School of Air Traffic Management, Civil Aviation University of China, Tianjin, China; School of Transportation, Nantong University, Nantong, China
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Snippet This study proposes a multi-objective optimization model for an Aircraft Flight Scheduling Problem (AFSP) for assigning a set of aircraft located at different...
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SubjectTerms Aircraft
Airline scheduling
Airports
Assignment problem
Civil aviation
Commercial aircraft
Efficiency
Expected values
Flight time
Fuzzy sets
Genetic algorithms
Heuristic
Heuristic methods
Integer programming
Light aircraft
Methods
Multiple objective analysis
Operating costs
Optimization
Optimization models
Polynomials
Scheduling
Sorting algorithms
Validity
Title A multi-objective fuzzy optimization model for multi-type aircraft flight scheduling problem
URI https://journals.vilniustech.lt/index.php/Transport/article/view/20536
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