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An algorithmic application with flexible airspace approach

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cris.virtualsource.department1d0a8e51-b2df-472f-9bc8-e71853ae162b
cris.virtualsource.department55e7f128-6fd6-4535-928b-0a50758728d9
cris.virtualsource.departmentf3e2ba62-4ea1-4370-b6cd-7a05060b0eb5
cris.virtualsource.orcid1d0a8e51-b2df-472f-9bc8-e71853ae162b
cris.virtualsource.orcid55e7f128-6fd6-4535-928b-0a50758728d9
cris.virtualsource.orcidf3e2ba62-4ea1-4370-b6cd-7a05060b0eb5
dc.contributor.authorAhmet Kökhan
dc.contributor.authorSerhan Kökhan
dc.contributor.authorMeriç Gökdalay
dc.contributor.authorGökdalay, Meriç Hatice
dc.date.accessioned2024-07-11T07:33:59Z
dc.date.available2024-07-11T07:33:59Z
dc.date.issued2023-03-07
dc.description.abstract<jats:sec> <jats:title content-type="abstract-subheading">Purpose</jats:title> <jats:p>The purpose of this study is to develop an operational level decision support system model for air traffic controllers (ATCos) within the framework of the Flexible Use of Airspace (FUA) concept to enable more efficient use of airspace capacity. This study produces a systematic solution to the route selection process so that the ATCo can determine the most efficient route with an operational decision support system model using Dijkstra’s Shortest Path Algorithm.</jats:p> </jats:sec> <jats:sec> <jats:title content-type="abstract-subheading">Design/methodology/approach</jats:title> <jats:p>In this study, a new decision support system model for ATCos in decision-making positions was recommended and used. ATCos use this model as a main model for determining the shortest and safest route for aircraft as an operational-level decision support system. Dijkstra Algorithm, used in the model, is defined step by step and then explained with the pseudocode.</jats:p> </jats:sec> <jats:sec> <jats:title content-type="abstract-subheading">Findings</jats:title> <jats:p>It has been determined that when the FUA concept and DSS are used while the ATCo chooses a route, significant fuel, time and capacity savings are achieved in flight operations. Emissions resulting from the negative environmental effects of air transportation are reduced, and significant capacity increase can be achieved. The operational level decision support system developed in the study was tested with 55 scenarios on the Ankara–Izmir flight route compared to the existing fixed route. The results for the proposed most efficient route were achieved at 11.22% distance (nm), 9.36%-time (min) savings and 837.71 kg CO<jats:sub>2</jats:sub> emission savings.</jats:p> </jats:sec> <jats:sec> <jats:title content-type="abstract-subheading">Originality/value</jats:title> <jats:p>As far as the literature is reviewed, most studies aimed at increasing airspace efficiency produce solutions that try to improve rather than replace the normal process. Considering the literature positioning of this study compared to other studies, the proposed model provides a new systematic solution to the problems that cause human-induced route inefficiency within the framework of the FUA concept.</jats:p> </jats:sec>
dc.identifier.doi10.1108/AEAT-06-2022-0147
dc.identifier.urihttps://acikarsiv.thk.edu.tr/handle/123456789/1974
dc.publisherEmerald
dc.relation.ispartofAircraft Engineering and Aerospace Technology
dc.relation.issn1748-8842
dc.titleAn algorithmic application with flexible airspace approach
dc.typejournal-article
dspace.entity.typePublication
oaire.citation.issue7
oaire.citation.volume95
relation.isAuthorOfPublication59b82276-3f82-411f-b7ea-bd664cdba7fa
relation.isAuthorOfPublication.latestForDiscovery59b82276-3f82-411f-b7ea-bd664cdba7fa

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