DOI: 
10.22389/0016-7126-2022-986-8-45-55
1 Skachkova M.E.
2 Gureva O.S.
Year: 
№: 
986
Pages: 
45-55

Saint-Petersburg Mining University

1, 
2, 
Abstract:
Issues of digitalization and information support of urban planning activities are now becoming particularly relevant against the background of introducing the new innovation economy in all territorial governmental levels. To date, the processes of state information systems implementing for urban planning activities (ISUPA) in the regions of Russia continue, but the conceptual model of the systems in question, which can serve as a basis for developers, has not been formed. The aim of the research is to create a conceptual model of information support for urban planning in the Russian Federation by identifying directions of its transformation. The goal was achieved in the process of retrospective analysis and determining the directions of domestic ISUPA transformation. The authors carried out a retrospective critical analysis of information provision of urban planning activity in Russia (ISUP), as a result of which patterns and trends of development were identified. The directions of ISUP transformation were determined. We formulated the basic principles of construction and functioning of state information systems to ensure urban development (SISUPA). A conceptual model of modern SISUPA was constructed. A set of functional capabilities of the system is defined. The proposed conceptual model of SISUPA and the principles of its construction and operation can be used in the process of SISUPA further improvement in any region of the Russian Federation. The studies show that although digitalization in Russia in the field of urban planning goes steadily, there are problems with the implementation of measures to create a comprehensive ISUP in due time.
References: 
1.   Benza A. S., Drabenko V. A. Otsenka vozmozhnostei munitsipal'noi gradostroitel'noi sredy na primere informatsionnoi sistemy obespecheniya gradostroitel'noi deyatel'nosti. Elektronnyi nauchnyi zhurnal, 2020, no. 1 (30), pp. 84–87.
2.   Burban P.Y. (2007) Information provision of the town-planning activity of Novgorod region using GIS technologies and topographic monitoring. Geodezia i Kartografia, 68(10), pp. 48–52.
3.   Butaeva E. M. Informatsionnaya sistema obespecheniya gradostroitel'noi deyatel'nosti kak instrument effektivnogo upravleniya territoriei. Probely v rossiiskom zakonodatel'stve, 2008, no. 2, pp. 397–400.
4.   Volkodaeva M. V., Kiselev A. V. O razvitii sistemy ekologicheskogo monitoringa kachestva atmosfernogo vozdukha. Zapiski Gornogo instituta, 2017, Vol. 277, pp. 589–596. DOI: 10.25515/PMI.2017.5.589.
5.   Dimitrenko N. V. Effektivnost' vnedreniya ISOGD v upravlenie razvitiem territorii. Sovremennye nauchnye issledovaniya i innovatsii, 2015, no. 4-5 (48), pp. 136–140.
6.   Zhdanchikov P. A., Il'ina I. N. Tsifrovizatsiya regio- nal'noi gradostroitel'noi deyatel'nosti. Regional'naya ekonomika: teoriya i praktika, 2019, Vol. 17, no. 11 (470), pp. 2148–2168. DOI: 10.24891/re.17.11.2148.
7.   Lepikhina O. Yu., Pravdina E. A. Variativnyi uchet tsenoobrazuyushchikh faktorov pri kadastrovoi otsenke zemel' (na primere goroda Sankt-Peterburga). Izvestiya Tomskogo politekhnicheskogo universiteta. Inzhiniring georesursov, 2019, Vol. 330, no. 2, pp. 65–74.
8.   Myamina I. S., Koroleva E. N. Informatsionnye sistemy obespecheniya gradostroitel'noi deyatel'nosti v usloviyakh razvitiya tsifrovoi ekonomiki. Vestnik sovremennykh issledovanii, 2018, no. 1.1 (16), pp. 211–213.
9.   Pashkevich M.A., Beck D., Matveeva V.A., Alekseenko A.V. Biogeokhimicheskaya otsenka sostoyaniya pochvenno-rastitel'nogo pokrova v promyshlennykh, selitebnykh i rekreatsionnykh zonakh Sankt-Peterburga. Zapiski Gornogo instituta, 2020, Vol. 241, pp. 125–130. DOI: 10.31897/pmi.2020.1.125.
10.   Skachkova M. E. Informatsionnaya sistema obespecheniya gradostroitel'noi deyatel'nosti na baze PTK SOTO. Zapiski Gornogo instituta, 2013, Vol. 204, pp. 181–186.
11.   Spirin P. P., Bezhaeva E. B., Kovyazin V. F., Asetskaya E. D. Avtomatizatsiya deyatel'nosti organov arkhitektury i gradostroitel'stva – osnova strategicheskogo planirovaniya. Zapiski Gornogo instituta, 2013, Vol. 204, pp. 154–162.
12.   Tararin A. M., Karandeeva M. V., Sukhareva O. A. Informatsionnoe obespechenie gradostroitel'noi deyatel'nosti. Nizhnii Novgorod: Nizhegorodskii gos. arkh.- stroit. un-t, 2013, 91 p.
13.   Khurgin V. M. Ob informatsionnykh sistemakh obespecheniya gradostroitel'noi deyatel'nosti. Informatsionnye resursy Rossii, 2006, no. 4 (92), pp. 3.
14.   Yurchenko T. V. Informatsionnye sistemy v ekonomike i upravlenii: Ucheb. posobie. Nizhnii Novgorod: Nizhegorodskii gos. arkh.-stroit. un-t, 2013, 114 p.
15.   Yakushev N. M., Maksimova N. A. Informatsionnoe obespechenie gradostroitel'noi deyatel'nosti. Fotinskie chteniya, 2016, no. 1 (5), pp. 316–321.
16.   Bykowa E., Dyachkova I., Zasenko V., Monev P. (2021) Substantiation of factors for assessing the historical and cultural value of the territories of settlements using digital technologies. Global Challenges of Digital Transformation of Markets (issue 1). St. Petersburg polytechnic university, St. Petersburg, pp. 219–233.
17.   Indrajit A., van Loenen B., Ploeger H., van Oosterom P. (2020) Developing a spatial planning information package in ISO 19152 land administration domain model. Land Use Policy, no. 98 (104111), DOI: 10.1016/j.landusepol.2019.104111.
18.   Indrajit A., van Loenen B., Suprajaka, Lemmen C., van Oosterom P. (2021) Implementation of the spatial plan information package for improving ease of doing business in Indonesian cities. Land Use Policy, no. 105 (105338), DOI: 10.1016/j.landusepol.2021.105338.
19.   Rybkina A. M., Demidova P. M., Kiselev V. A. (2016) Working-out of the geostatistical model of mass cadastral valuation of Urban lands evidence from the city Vsevolozhsk (Russia). International Journal of Applied Engineering Research, no. 11 (24), pp. 11631–11638.
Citation:
Skachkova M.E., 
Gureva O.S., 
(2022) Information support of urban planning activities in Russia. Geodesy and cartography = Geodezia i Kartografia, 83(8), pp. 45-55. (In Russian). DOI: 10.22389/0016-7126-2022-986-8-45-55
Publication History
Received: 13.12.2021
Accepted: 28.07.2022
Published: 20.09.2022

Content

2022 August DOI:
10.22389/0016-7126-2022-986-8