Formalization of Life Cycle Stages of Geographic Information Products Creation at Research and Production Enterprises
https://doi.org/10.21869/2223-1560-2020-24-4-146-165
Abstract
Purpose of research. The purpose of this article is to formalize the processes of creating geographic information products (GIP), within its life cycle (LC), taking into account heterogeneous types of GIS resources of a research - production enterprise (RPE). A typical subsystem of AIS infrastructure of an enterprise is an object of this study.
Methods. On the basis of an analysis of scientific sources and standards it was shown that changes in traditional approaches, principles, models are necessary in the creation of GIP. It is also necessary to change infrastructure and resources management of NPP. Presented in tabular form model is describing GIP life cycle taking into account the list of required resources and provisions. Features of LC GIP based on geoinformation technologies processes have been identified. The general approach in formalization of stages describing processes of GIP processing and operation of typical elements of GIS enterprise is described. A model of automated processing process (APP) of GIP is developed on the basis of system representations and theoretical-multiple approach. It is represented by the Cartesian product of vectors. The role and features of information support in the development of GIP are highlighted.
Results. The analysis of GIP functioning features, as well as developed structural graphic and tabular presentation, made it possible to identify links between GIP features and stages content of their LCs. The results will allow clearer positioning of GIP elements and components presented for development and operation, especially in GIS NPP. The results will provide an opportunity to define the requirements for systems of this class adequately.
Conclusion. The presented LC GIP models, taking into account the identified features of their construction and functioning, will allow, in the future, setting and solving modeling and management system tasks of this class.
About the Authors
E. M. ZaitsevRussian Federation
Evgeniy M. Zaitsev, Cand. of Sci. (Engineering), Deputy General Director
3rd Mytishchenskaya str. 16, building 37, Moscow 129626
E. A. Kolomiets
Russian Federation
Elena A. Kolomiets, Post-Graduate Student
50 Let Oktyabrya str. 94, Kursk 305040
V. N. Nikolaev
Russian Federation
Viktor N. Nikolaev, Dr. of Sci. (Engineering), Professor of the Department of Information Systems and Technologies
50 Let Oktyabrya str. 94, Kursk 305040
References
1. Yordan E., Argila K. Strukturnye modeli v ob"ektno-orientirovannom analize i proektirovanii [Structural models in object-oriented analysis and design]. Moscow, LORI Publ., 1999. 264 p. (In Russ.).
2. Kuzmin G. V., Makarin I. V., Nikolaev V. N., Stratilatov N. R. Metodologiya sozdaniya avtomatizirovannykh informatsionnykh sistem kollektivnoi obrabotki raznorodnoi informatsii ot sredstv aerokosmicheskogo monitoringa [Methodology for creating automated information systems for the collective processing of heterogeneous information from aerospace monitoring tools]. Kursk, 2018. 245 p. (In Russ.).
3. Rosenberg I. N. Geoinformatsionnaya model' [Geoinformation model]. Mezhdunarodnyi zhurnal prikladnykh i fundamental'nykh issledovanii = International Journal of Applied and Fundamental Research, 2016, no. 5-4, pp. 675-676 (In Russ.).
4. Tsvetkov V. Ya. Informatsionnye modeli i geoinformatsionnye modeli [Information models and geoinformation models]. Obrazovatel'nye resursy i tekhnologii = Educational Resources and Technologies, 2016. no. 4 (16). pp. 114-120 (In Russ.).
5. Lygina N. I., Rudakova O. V., Aleksakhin A. N., Terekhova L. A. Informatsionnokommunikatsionnye tekhnologii kak sredstvo povysheniya effektivnosti upravleniya promyshlennym predpriyatiem [Information and communication technologies as a means of improving the efficiency of industrial enterprise management]. Izvestiya Yugo-Zapadnogo gosudarstvennogo universiteta. Seriya: Upravlenie, vychislitel'naya tekhnika, informatika. Meditsinskoe priborostroenie = Proceedings of the Southwest State University. Series: Control, Computing Engineering, Information Science. Medical Instruments Engineering., 2017, vol. 7, no. 4 (25), pp. 136-148 (In Russ.).
6. Kapralov E. G., Koshkarev A.V., Tikunov V. S. et al. Geoinformatika [Geoinformatics]. Moscow, 2008. 384 p. (In Russ.).
7. Kablashova I. V., Logunova I. V., Salikov Yu.A. Innovatsionnoe razvitie sistemy upravleniya predpriyatiem v usloviyakh tsifrovoi transformatsii [Innovative development of the enterprise management system in the conditions of digital transformation]. Organizator proizvodstva = Organizer of Production, 2019, vol. 27, no. 2, pp. 46-58 (In Russ.)
8. Morteza Omidipoor, Mohammadreza Jelokhani-Niaraki, Athena Moeinmehr, Abolghasem Sadeghi-Niaraki, su-Mi Choi, GIS-oriented system of decision support to facilitate the participation in the urban renewal of the political process. Land Use Policy, 2019, vol. 88, pp. 104-150.
9. Mayorov A. A., Tsvetkov V. Y. Geoinformatika kak vazhneishee napravlenie razvitiya informatiki [Geoinformatics as an important direction of development of computer science]. Informatsionnye tekhnologii = Information Technology, 2013. no. 11, pp. 2-7 (In Russ.).
10. Shaitura S. V. Obzor tekhnologii sozdaniya geoinformatsionnoi produktsii [Review of technologies for creating geoinformation products]. Informatsionnye tekhnologii = Information Technology, 2011, no. 9, pp. 27-30 (In Russ.).
11. Yusupov R. M., Sokolov B. V., Ptushkin A. I., Ikonnikova A.V., Shkolaev S. A., Tsivirko E. G. Analiz sostoyaniya issledovanii problem upravleniya zhiznennym tsiklom iskusstvenno sozdannykh ob"ektov [Analysis of the state of research on problems of life cycle management of artificially created objects]. Trudy SPIIRAN = SPIIRAS Proceedings, 2011, is. 16, pp. 37-109 (In Russ.).
12. Sergejs Kodors, Aldis Rausis, Aivars Ratkevich, Janis Zvirgzds, Artis Teilans, Yvonne Anseong. Real Estate Monitoring System Based on Remote Sensing and Image Recognition Technologies [Monitoring of real estate based on remote sensing technology and image recognition]. Procedia Computer Science, 2017, vol. 104, pp. 460-467 (In Russ.).
13. Andre Oliveira da Silva, Ricardo Augusto Souza Fernandes, Intelligent control on the basis of the multipurpose territorial cadastre and geographic information systems: an Analysis of geo-information, transparency and joint participation to Brazilian capitals. Land Use Policy, 2020, vol. 97, pp. 104752 (In Russ.).
14. Kramarov S., Khramov V. (2020) methodology for the formation of a single geoinformation space in the region. In: Sukhomlin V., Zubareva E. (ed.) modern information technologies and it education. CITITO-2018. Communications in computer science and engineering, vol. 1201. Springer, Cham.
15. Dyshlyuk S. S., Nikolaeva O. N., Romashova L. A. Nauchno-metodicheskie osnovy formalizatsii protsessov sostavleniya tematicheskikh kart dlya realizatsii instrumental'noi spravochno-analiticheskoi geoinformatsionnoi sistemy [Scientific and methodological bases of formalization of the processes of drawing up thematic maps for the implementation of the instrumental reference and analytical geoinformation system]. Vestnik SGGA = Vestnik SGGA, 2011, is. 1 (14), pp. 49-54 (In Russ.).
16. Petukhov G. B. Osnovy teorii effektivnosti tselenapravlennykh protsessov [Fundamentals of the theory of efficiency of purposeful processes]. Moscow, 1989 (In Russ.)
17. Tsvetkov V. Ya. GIS i tekhnologii [GIS and technologies]. Moscow, Finansy i statistika Publ., 1998. 287 p. (In Russ.).
18. Nikolaev V. N. Upravlenie zhiznennym tsiklom innovatsionnoi GIS [Life cycle management of innovative GIS]. Saabryuken, Palmarium academic publishing, 2013. 374 p. (In Russ.).
19. Nikolaev V. N., Potapenko A.M., Novikov V. N., Makarin I. V. Osnovnye napravleniya primeneniya rezul'tatov kosmicheskoi deyatel'nosti v sotsial'no-ekonomicheskikh sistemakh Kurskoi oblasti [Main directions of application of space activity results in socioeconomic systems of the Kursk region]. Innovatsionnaya ekonomika: perspektivy razvitiya i sovershenstvovaniya = Innovative Economy: Prospects for Development and Improvement, 2016, no. 8(18), pp. 91-97 (In Russ.).
20. Atefeh Dehghani Ashkezari, Nasser Hosseinzadeh, Ayub Chebli, Mahamm Albadi, development of a corporate geographic information system (GIS) integrated with smart grid. Sustainable Energy, Grids and Net-works, 2018, vol. 14, pp. 25-34.
Review
For citations:
Zaitsev E.M., Kolomiets E.A., Nikolaev V.N. Formalization of Life Cycle Stages of Geographic Information Products Creation at Research and Production Enterprises. Proceedings of the Southwest State University. 2020;24(4):146-165. (In Russ.) https://doi.org/10.21869/2223-1560-2020-24-4-146-165