The Skeletal Trap: Mapping Spatial Inequality and Ghost Stops in Ankara's Transit Network
Abstract
Ankara's public transport crisis is commonly framed as a shortage of buses or operational inefficiency. This study argues that the problem is fundamentally morphological and structural. The city's leapfrog urban expansion has produced fragmented peripheral clusters disconnected from a rigid, center-oriented bus network. As a result, demand remains intensely concentrated along the Kizilay-Ulus axis and western corridors, while peripheral districts experience either chronic under-service or enforced transfer dependency. The deficiency is therefore not merely quantitative but rooted in the misalignment between urban macroform and network architecture. The empirical analysis draws on a 173-day operational dataset derived from route-level passenger and trip reports published by EGO under the former "Transparent Ankara" initiative. To overcome the absence of stop-level geospatial data, a Connectivity-Based Weighted Distribution Model reallocates passenger volumes to 1 km x 1 km grid cells using network centrality. The findings reveal persistent center-periphery asymmetries, structural bottlenecks, and spatially embedded accessibility inequalities.
Keywords
Cite
@article{arxiv.2602.15470,
title = {The Skeletal Trap: Mapping Spatial Inequality and Ghost Stops in Ankara's Transit Network},
author = {Elifnaz Kancan},
journal= {arXiv preprint arXiv:2602.15470},
year = {2026}
}
Comments
13 pages, 12 figures. Spatial analysis of Ankara transit network using anomaly detection and grid-based modeling