Preview

Proceedings of the Russian Geographical Society

Advanced search

Geoinformation Monitoring of the Territory Municipal Areas on Landscape Basis

https://doi.org/10.31857/S0869607121040029

Abstract

Complementary tools for managing the territory – geoinformation monitoring (GIM) and geoinformation systems (GIS) – in unity provide the collection, storage, processing, presentation and visualization of geographical data. GIS is a part of the information block of the organizational system of territorial management, and the GIM solves the problems of linking the observed situation with the GIS, fills the invariant GIS database for solve numerous problems. Monitoring of old and new sources, spatially distributed data of different origins occupies a special place in GIM. The GIM-GIS technology was developed and implemented on the example of municipal districts of the Irkutsk region and the Republic of Buryatia when solving various problems using space monitoring data and corrective ground-based surveys. In a system analysis using GIM-GIS technology, regions are considered as an updated geo-informational object of territorial planning and management in a specific landscape environment to ensure safety and efficiency of life. For processing local information, triad schemes of formal data synthesis based on group operations are proposed. The collection, preparation and cartographic visualization of data in the GIM-GIS on infection of the local population with tick-borne encephalitis in the Baikal region have been organized.

About the Authors

A. K. Cherkashin
Sochava Institute of geography SB RAS
Russian Federation


S. I. Lesnykh
Sochava Institute of geography SB RAS
Russian Federation


References

1. Berlyant A.M. Teoriya geoizobrazhenij. M.: GEOS, 2006. 261 s.

2. Ventcel’ E.S. Issledovanie operacij. M.: Sovetskoe radio, 1972. 552 s.

3. Geoinformacionnaya sistema upravleniya territoriej / A.K. Cherkashin, A.D. Kitov, I.V. Bychkov i dr. Irkutsk: Izdatel’stvo Instituta geografii SO RAN, 2002. 151 s.

4. Zatyagalova V.V. Filosofiya geoinformacionnogo monitoringa // Perspektivy nauki i obrazovaniya. 2015. № 1(13). S. 17–23.

5. Izrael’ Yu.A. Ekologiya i kontrol’ sostoyaniya prirodnoj sredy. M.: Gidrometeoiz-lpodat, 1984. 560 s.

6. Isachenko A.G. Landshaftovedenie vchera i segodnya // Izv. RGO. 2006. V. 138. Vyp. 5. S. 1–20.

7. Istomina E.A. Landshaftnaya GIS kak instrument ocenivaniya i planirovaniya ispol’zovaniya zemel’ // Landshaftovedenie: teoriya, metody, landshaftno-ekologicheskoe obespechenie prirodopol’zovaniya i ustojchivogo razvitiya: materialy XII Mezhdunarodnoj landshaftnoj konferencii. T. 2. Tyumen’: Izdatel’stvo Tyumenskogo gosudarstvennogo universiteta, 2017. S. 341–347.

8. Istomina E.A., Cherkashin A.K. Vydelenie granicz funkcional’no odnorodnyh arealov na kosmicheskih snimkah na osnove vychisleniya opredelitelya Yakobi // Geografiya i prirodnye resursy. 2013. № 1. S. 157–165.

9. Koren’kov V.V., Micyn P.V., Dmitrienko P.V. Arxitektura sistemy monitoringa central’nogo informacionno- vychislitel’nogo kompleksa OIYaI // Informacionnye tehnologii i vychislitel’nye sistemy. 2012. № 3. S. 31–42.

10. Lesnyx S.I., Cherkashin A.K. Model’nyj analiz vzaimodejstviya raznyh grupp porod v processe sukcessionnyh izmenenij gornoj tajgi // Izv. Irkutskogo gosudarstvennogo universiteta. Seriya “Biologiya. Ekologiya”, 2016. V. 15. № 1. S. 11–24.

11. Maksimova M.V. Monitoring prostranstvennyh ob’’ektov // European Researcher. 2012. V. 36. №12-1. S. 2114–2117.

12. Mil’kov F.N. Pravilo triady v fizicheskoj geografii // Zemlevedenie. V. 15. M.: Izd-vo MGU, 1984. S. 18–25.

13. Myasnikova S.I., Cherkashin A.K. Optimizacionnoe geoinformacionnoe kartografirovanie // Geodeziya i kartografiya. 2007. № 4. S. 38–42.

14. Myasnikova S.I., Cherkashin A.K. Prognoznoe geoinformacionnoe kartografirovanie // Geodeziya i kartografiya. 2010. № 11. S. 30–33.

15. Myasnikova S.I., Cherkashin A.K. Geoontologiya sozdaniya serii kart municipal’nyh rajonov // Geodeziya i kartografiya. 2012. № 12. S. 41–48.

16. Paxaxinova Z.Z., Beshencev A.N., Garmaev E.Zh. Sozdanie GIS-monitoringa prirodopol’zovaniya bassejna ozera Bajkal // Optika atmosfery i okeana. 2018. V. 31. № 08. S. 647–651.

17. Savinyh V.P. Primenenie geoinformacionnogo monitoringa dlya resheniya ekologicheskih zadach // Perspektivy nauki i obrazovaniya, 2015. № 4(16). S. 28–33.

18. Slyudyanskij rajon Irkutskoj oblasti: priroda, hozyajstvo i naselenie. Atlas (48 kart). Irkutsk: Izd-vo Instituta geografii im. V.B. Sochavy SO RAN, 2012. [Elektronnyj resurs – CD].

19. Sochava V.B. Vvedenie v uchenie o geosistemax. Novosibirsk: Nauka, Sibirskoe otdelenie, 1978. 319 s.

20. Sochava V.B., Volkova V.G., Druzhinina N.P. i dr. Metod kompleksnoj ordinacii v landshaftovedenii i biogeocenologii // Dokl. In-ta geografii Sibiri i Dal’nego Vostoka. 1967. Vy`p. 14. S. 3–17.

21. Frolov A.A., Cherkashin A.K. Vysotnyj gradient kak kompleksnyj faktor formirovaniya mikrozonal’nosti landshaftov i serijnosti geosistem // Geografiya i prirodnye resursy. 2012. № 1. S. 14–24.

22. Czvetkov V.Ya. Geoinformacionnyj monitoring // Izv. vysshih uchebnyh zavedenij. Geodeziya i aerofotos’’ emka. 2005. № 5. S. 151–155.

23. Cherkashin A.K. (red.) Landshaftno-interpretacionnoe kartografirovanie. Novosibirsk: Nauka, 2005. 424 s.

24. Cherkashin A.K. Geografiya i geoinformatika // Geografiya i prirod. resursy. 2006. № 4. S. 19–29.

25. Cherkashin A.K. Geoinformatika – vysshaya geografiya // Ustojchivoe razvitie territorij: teoriya GIS i prakticheskij opyt. V. 1. Kaliningrad: Mezhdunarodnaya kartograficheskaya associaciya, 2006. S. 6–11.

26. Cherkashin A.K. Geograficheskaya tochnost’ i osobennosti metrologicheskogo modelirovaniya geoprostranstvennyh dannyh // Ukraїns’kij metrologіchnij zhurnal. 2014. № 2. S. 7–15.

27. Cherkashin A.K., Lesnyh S.I., Sklyanova I.P. Koordinacionnoe upravlenie prirodoohrannoj deyatel’nost’yu regiona: konceptual’naya model’ // Teoreticheskaya i prikladnaya ekonomika. 2019. №3. S. 81–97. DOI 10.25136/2409-8647.2019.3.24404. URL: http://e-notabene.ru/etc/article_24404.html

28. E`kologicheskij atlas Bajkal’skogo regiona. Kompleksnyj modul’ subregional’nyh i municipal’nyh kart. Usloviya i faktory formirovaniya ekologicheskoj obstanovki v Slyudyanskom rajone Irkutskoj oblasti. URL: http://atlas.isc.irk.ru/

29. Cantwell M.D., Forman R.T.T. Landscape graphs: Ecological modeling with graph theory to detect configurations common to diverse landscapes // Landscape Ecology. 1993. Vol. 8. № 4. P. 239– 255.

30. Craig W., Harris T., Wiener D. (eds.). Community participation and geographical information systems. N.Y.: CRC Press. 2002. 383 p.

31. Johnston R.J. Geography and GIS // Geographical Information Systems: Principles, Techniques, Management and Applications, John Wiley & Sons, Ltd., 2006. P. 27–35.

32. Lesnykh S.I., Mel’nikova O.V. Generation of Databases and Visualization of Current Epidemiological

33. Information for Purposes of a Medical-Ecological Monitoring of a Region // Geogr. Nat. Resour. 2019. V. 40. P. 115. https://doi.org/10.1134/S1875372819020033 (data obrashheniya 12.04.2021).

34. Medvedev A., Telnova N., Alekseenko N., Koshkarev A., Kuznetchenko P., Asmaryan S., Narykov A. UAV-Derived Data Application for Environmental Monitoring of the Coastal Area of Lake Sevan, Armenia with a Changing Water Level // Remote sensing. 2020. № 12, P. 3821. DOI 10.3390/rs12223821

35. Ryu, Joo-Hyung et al. “EDITORIAL: Special Issue on “Advances in Remote Sensing and Geoscience Information Systems of the Coastal Environments.” // J. Coastal Res. 2019. P. V–XI. www.jstor.org/stable/26778930 (data obrashheniya 12.04.2021).

36. Thompson M.M., Arceneaux B.N. Public participation geographic information systems: A model of citizen science to promote equitable public engagement // Advancing equity planning now, N. Krumholz, K.W. Hexter (eds). Cornell University Press. 2018. P. 243–262. https://www.jstor.org/stable/10.7591/j.ctv43vr3d.16 (data obrashheniya 12.04.2021).

37. Vannieuwenhuyze B. Pixels or Parcels?: Parcel-Based Historical GIS and Digital Thematic Deconstruction as Tools for Studying Urban Development // Mapping Landscapes in Transformation: Multidisciplinary Methods for Historical Analysis. Leuven University Press Publisher, 2019. P. 217–236. https://www.jstor.org/stable/j.ctvjsf4w6.12 (data obrashheniya 12.04.2021).

38. Yano K. GIS and quantitative geography // GeoJ. The contribution of GIS to geographical research. 2000. V. 52. № 3. P. 173–180.


Review

For citations:


Cherkashin A.K., Lesnykh S.I. Geoinformation Monitoring of the Territory Municipal Areas on Landscape Basis. Proceedings of the Russian Geographical Society. 2021;153(4):32-46. (In Russ.) https://doi.org/10.31857/S0869607121040029

Views: 103


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0869-6071 (Print)