Image 1 of 9: Airport mobility system overview renderAutonomous Airport Parking
An integrated airport mobility concept connecting smart parking, autonomous terminal shuttles, passenger guidance and a mobile application.
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A project-led portfolio spanning intelligent mobility, traffic simulation, road design, signalisation and spatial analysis.
From airport access concepts to urban junction analysis, each project addresses how people, vehicles and streets work together.
Image 1 of 9: Airport mobility system overview renderAn integrated airport mobility concept connecting smart parking, autonomous terminal shuttles, passenger guidance and a mobile application.
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Image 1 of 7: Project methodology and concept posterA public-transport concept that adapts stops, routes, fleet requirements and service intervals to passenger demand.
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Image 1 of 10: Existing street and roadside conditionsA road-improvement and urban-design study supported by site photography, corridor mapping, CAD plans and street cross-sections.
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Image 1 of 2: Gonyeli roundabout movement diagramA junction study centred on traffic demand, movement patterns, signalisation and PTV-based modelling.
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Image 1 of 3: Topographic map used for route selectionA complete road-design exercise covering traffic projections, route selection, curves, pavement structure and cross-sections.
View projectA generalised routing framework for urban logistics and parking-enforcement patrols, developed with ARS Traffic & Transport Technology.
View projectA corporate-commute system combining autonomous vehicles, employee matching and real-time adaptive routing.
View projectA real-time mobility concept that combines emission sensing, exposure modelling and alternative routes for pedestrians.
View projectA Python simulation of customer movement, queues, checkouts and store operations built across a sequence of modelling assignments.
View projectA data and machine-learning study classifying whether a vessel is genuinely moored from live AIS attributes and movement behaviour.
View projectConnected systems for parking, passenger guidance and demand-responsive transport.
Network, corridor and junction models developed with PTV Vissim.
Geometric design, street sections, corridor layouts and pavement calculations.
Traffic counts, phasing, cycle calculations and intersection-control proposals.
Road-network layers, settlement data and map-ready geographic archives.
Site documentation, aerial surveys, CAD drawings and three-dimensional communication.
Simulation, machine learning, optimisation and evidence-led transport decisions.
A working set of transport-planning, design, modelling and presentation tools.

I am a Transportation Engineering graduate from Yalova University. My supplied CV also lists graduate studies in Transport, Infrastructure and Logistics at TU Delft from 2023.
My experience combines academic design work, three public-sector transport internships and team leadership in intelligent-transport projects that reached the TEKNOFEST finals in 2022 and 2023.
I am interested in transport planning, traffic modelling, infrastructure design and intelligent-mobility opportunities.
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