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Marinenkov Denis Vladimirovich -
Group of companies NEOLANT
Candidate of Technical Sciences, director, Department of Oil and Gas Sector, Group of companies NEOLANT, 47 A Pokrovka str., Moscow, 105062, Russian Federation;
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At the present time all over the world the main concept of life cycle maintenance of complex objects is the use of data-centric information systems of engineering data management, which allow providing support of the correspondence of an object configuration to its present state. The central part of such a system is a 3D information model of the object. The information model has a fundamental advantage in comparison with typical user applications - presence of complete and up-to-date data on industrial object topology. The authors consider the practical use of information modeling technologies for solving the tasks of engineering data management on a large industrial facility on all the stages of the lifecycle: from design to utilization. Such Russian solutions are investigated as: 3D CAD POLYNOM - to create 3D model of an object, PLM/PDM-platform NEOSYNTEZ - to provide engineering data management on all the stages of the lifecycle and a software product InterBridge - to translate graphical and semantic 2D/3D data between CAD and PLM of different platforms.
DOI: 10.22227/1997-0935.2016.1.181-191
References
- Marinenkov D.V., Dorobin D.S., Snezhkova E.A. InterBridge — rossiyskaya tekhnologiya dlya sozdaniya edinoy informatsionnoy 3D modeli ob”ekta [InterBridge — a Russian Technology for Creation of a General Information 3D Model of an Onject]. CAD/CAM/CAE Observer. 2015, no. 8, pp. 70—75. (In Russian)
- NEOSINTEZ — pervaya rossiyskaya PLM-sistema dlya rossiyskikh predpriyatiy PGS [NEOSYNTEZ — the First Russian PLM-System for Russian Companies of Industrial and Civil Construction]. CAD/CAM/CAE Observer. 2015, no. 7 (99), pp. 62—65. (In Russian)
- Modelirovanie promyshlennykh ob”ektov v 3D SAPR POLINOM [Modeling of Industrial Objects in 3D CAD POLYNOM]. Avtomatizatsiya v promyshlennosti [Automation in the Construction]. 2015, no. 9, p. 29. (In Russian)
- Marinenkov D.V. Opyt primeneniya tekhnologiy informatsionnogo modelirovaniya pri realizatsii infrastrukturnykh proektov TEK [Experience of Applying Information Modeling Technoogies when Executing Infrastructure Projects of Fuel fnd Energy Complex]. Perspektivy razvitiya gradostroitel’stva v Rossii : doklad nauchno-prakticheskoy konferentsii 12—13.11.2015 [Development Prospects of Urban Planning in Russia: Report on a Science and Practice Conference 12—13.11.2015]. (In Russian)
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Zhukhovitskiy Grigoriy Mikhaylovich -
LLC Company Credo-Dialogue
full member, International Transport Academy, Honorary Road Builder of CIS, chairman, Department of Information Technologies in the Construction and Territorial Management of the Federal Intersectoral Board of All-Russian Public Organization “Business Russia”, Chairman of the Management Board, LLC Company Credo-Dialogue, 71-8 Izmaylovskoe shosse, Moscow, 105187, Russian Federation;
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Karpov Aleksandr Aleksandrovich -
LLC Company Credo-Dialogue
Development Director, development manager of the software CREDO of engineering-geological aim, LLC Company Credo-Dialogue, 71-8 Izmaylovskoe shosse, Moscow, 105187, Russian Federation;
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In the process of state structure transformation in the Russian Federation in 1990-2010s the legal base was greatly changed. In the process of these changes the issues of topographic plans of the territories indented for building and inter-settlement territories were almost withdrawn from legal and normative-technical regulation. As a result the legal status of city geological services and the accumulated materials the same as the whole activity on topographic plans’ maintenance is now out of the unified legal and normative framework. At the same time old technologies of creating and updating topographic plans is now beneath criticism in terms of effectiveness and quality of the obtained results. The authors consider the problem of creating, updating and use of topographic plans of urban settlements. Brief historical background of the topic is given, the existing information technologies and suggestions on the changes in the regulatory framework of urban development activity are described.
DOI: 10.22227/1997-0935.2016.2.186-193
References
- Vasil’ev I.V., Korobov A.V., Pobedinskiy G.G., Pridankin A.B. Topografo-geodezicheskoe i kartograficheskoe obespechenie Rossiyskoy Federatsii. Sostoyanie i perspektivy razvitiya otrasli geodezii i kartografii [Topographic-Geodesic and Cartographic Support of the Russian Federation. State and Development Prospects of the Geodetic Branch and Cartography]. Geodeziya i kartografiya [Geodesy and Cartography]. 2014, no. 12, pp. 2—11. (In Russian)
- Kontseptsiya razvitiya otrasli geodezii i kartografii do 2020 g. Utverzhdena Rasporyazheniem Pravitel’stva Rossiyskoy Federatsii ot 17.12.2010 g. № 2378-r [The Concept of Geodesy and Cartography Development up to 2020. Approved by the Decree of the Government of the Russian Federation from 17.12.2010 g. № 2378-r]. (In Russian)
- Brovko E.A. Gosudarstvennyy topograficheskiy monitoring: sovremennoe reshenie problemy aktualizatsii prostranstvennykh dannykh [State Topographic Monitoring: Modern Solution to the Problem of Updating Spatial Data]. Geodeziya i kartografiya [Geodesy and Cartography]. 2012, no. 2, pp. 38—46. (In Russian)
- Lamert D.A., Portnov A.M. Sovremennye zadachi gosudarstvennogo geodezicheskogo nadzora v strukture territorial’nykh organov Rosreestra [Contemporary Tasks of State Geodesic Control in the Structure of Territorial Bodies of Federal Service for State Registration, Cadastre and Cartography]. Interekspo Geo-Sibir’ : sbornik statey po materialam Mezhdunarodnogo nauchnogo kongressa [Interexpo Geo-Siberia : Collection of the Articles of the International Scientific Congress]. Novosibirsk, 2011, vol. 3, no. 2, pp. 11—16. (In Russian)
- Obidenko V.I., Nefedov S.N. Avtomatizatsiya deyatel’nosti territorial’nykh organov gosudarstvennogo geodezicheskogo nadzora. Na puti k postroeniyu informatsionnogo obshchestva [Automation of Territorial Bodies’ Activity of the State Geodesic Control. On the Way to Building Information Society]. Geodeziya i kartografiya [Geodesy and Cartography]. 2009, no. 9, pp. 51—57. (In Russian)
- Novoselov D.B., Zvyagintsev E.A. Sozdanie i vedenie tsifrovogo dezhurnogo plana territoriy promyshlennykh predpriyatiy [Creation and Maintenance of Digital Working Plan of Industrial Enterprises’ Territories]. Interekspo Geo-Sibir’ : sbornik statey po materialam Mezhdunarodnogo nauchnogo kongressa [Interexpo Geo-Siberia : Collection of the Articles of the International Scientific Congress]. Novosibirsk, 2012, vol. 1, no. 1—2, pp. 37—41. (In Russian)
- Kolobov R.V. Novye tekhnologii vedeniya dezhurnogo plana goroda [New Technologies of Keeping Working City Plan]. Stroykompleks Srednego Urala [Stroykomplex of Middle Ural]. 2010, no. 12 (December). (In Russian)
- Silyakova L.V. Tekhnologiya vedeniya tsifrovogo topograficheskogo plana Nizhnego Novgoroda [Technology of Keeping Digital Topographic Plan of Nizhny Novgorod]. Avtomatizirovannye tekhnologii izyskaniy i proektirovaniya [Automated Technologies of Research and Design]. 2011, no. 4 (43), pp. 65—68. (In Russian)
- Kontseptsiya sozdaniya i vedeniya topografo-geodezicheskogo monitoringa territoriy poseleniy [Concept of Creating and Maintaining Topographic-Geodesic Monitoring of the Territories of Settlements]. Geoprofi [Geoprofi]. 2013, no. 2, pp. 10—14. (In Russian)