ISSN 0016-7126 (Print)
ISSN 2587-8492 (Online)
1. Kiselev V. A., Tributs O. A. Raionirovanie munitsipal'nogo obrazovaniya po kompleksu pokazatelei blagoustroennosti. Zapiski Gornogo instituta, 2012, no. 196, pp. 68–73. |
2. Kozin E. G. Sovershenstvovanie organizatsionno-tekhnicheskikh reshenii po zakrepleniyu v khozyaistvennoe vedenie zakonchennykh stroitel'nykh ob"ektov metropolitena. Zapiski Gornogo instituta, 2017, no. 228, pp. 674–680. DOI: 10.25515/pmi.2017.6.674. |
3. Somov Eh.V. Geoinformacionnoe modelirovanie pri ocenke kachestva transportnogo obsluzhivaniya gorodskogo naseleniya (na primere Yugo-Zapada Moskvy). Vestn. Mosk. un-ta, Seriya 5. Geografiya, M.: Izd-vo MGU, 2013, no. 1, pp. 42-46. |
4. Somov Eh.V. Matematiko-kartograficheskoe modelirovanie dostupnosti centra goroda na obshchestvennom transporte pri ocenke transportnoj obespechennosti naseleniya g. Moskvy. Regional'nye issledovaniya, 2014, no. 1(43), pp. 68–74. |
5. Allen W. B., Liu D., Singer S. (1993) Accesibility measures of U.S. metropolitan areas. Transportation Research Part B: Methodological, no. 27 (6), pp. 439–449. DOI: 10.1016/0191-2615(93)90016-4. |
6. Baltyzhakova T., Romanchikov A. (2021) Spatial analysis of subway passenger traffic in Saint Petersburg. Geodesy and Cartography, no. 47 (1), pp. 10–20. DOI: 10.3846/gac.2021.11980. |
7. Boisjoly G., El-Geneidy A. M. (2017) How to get there? A critical assessment of accessibility objectives and indicators in metropolitan transportation plans. Transport Policy, no. 55, pp. 38–50. DOI: 10.1016/j.tranpol.2016.12.011. |
8. Bykowa E., Gerasimova I. (2019) Land Plot Selection Rationale for the Location of Linear Facilities. Land, no. 8 (4), DOI: 10.3390/land8040067. |
9. Bykowa E., Skachkova M., Raguzin I., Dyachkova I., Boltov M. (2022) Automation of Negative Infrastructural Externalities Assessment Methods to Determine the Cost of Land Resources Based on the Development of a 'Thin Client' Model. Sustainability, no. 14 (15), DOI: 10.3390/su14159383. |
10. Kraft S. (2016) Measuring and modelling the spatial accessibility of public transport stops in GIS. Hungarian Geographical Bulletin, no. 65 (1), pp. 57–69. DOI: 10.15201/hungeobull.65.1.5. |
11. Miller E. J. (2018) Accessibility: measurement and application in transportation planning. Transport Reviews, no. 38 (5), pp. 551–555. DOI: 10.1080/01441647.2018.1492778. |
12. Morozov A. S., Kontsevik G. I., Shmeleva I. A., Schneider L., Zakharenko N., Budenny S., Mityagin S. A. (2023) Assessing the transport connectivity of urban territories, based on inter-modal transport accessibility. Frontiers in Built Environment, no. 9, pp. 1–14. DOI: 10.3389/fbuil.2023.1148708. |
13. Smith D. A., Shen Y., Barros J., Zhong C., Batty M., Giannotti M. (2020) A compact city for the wealthy? Employment accessibility inequalities between occupational classes in the London metropolitan region 2011. Journal of Transport Geography, Volume 86, no. 102767, DOI: 10.1016/j.jtrangeo.2020.102767. |
14. van den Berg J., Köbben B., van der Drift S., Wismans L. (2018) Towards a dynamic isochrone map: Adding spatiotemporal traffic and population data. In book: Progress in Location Based Services. pp. 195–209. DOI: 10.1007/978-3-319-71470-7_10. |
(2024) Evaluation of public land transport accessibility in St. Petersburg, Russia, using a geospatial approach. Geodesy and cartography = Geodezia i Kartografia, 85(1), pp. 43-51. (In Russian). DOI: 10.22389/0016-7126-2024-1003-1-43-51 |