Macrosystem dynamics
Data Mining and Pattern Recognition
Information Technology
Nyi Nyi Htwe, G.D. Volkova, O.G.Grigoriev Development of a formal apparatus for the description and processing of conceptual models
Mathematical models of socio-economic processes
System analysis in medicine and biology
System diagnostics socio-economic processes
Nyi Nyi Htwe, G.D. Volkova, O.G.Grigoriev Development of a formal apparatus for the description and processing of conceptual models
Abstract. 

This article presents a formal description of the conceptual model of the 1st kind at the object and specific levels for the subject task, which represents documented technical knowledge, taking into account the varying degree of their formalization and stratification of the conceptual model into constant information.

Keywords: 

conceptual model of the 1st kind of object, statistical constraints of the 1st kind, typology of constraints of the 1st kind.

PP. 40-51.

DOI: 10.14357/20790279230305
 
References

1. Volkova G.D. Methodology of automation of intellectual work – Moscow.: Janus-K, 2013. P.104.
2. Volkova G.D. Conceptual modeling of project tasks: textbook. Manual. Moscow. “MSTU “STANKIN”, 2016. P. 117.
3. Lavrenova O.A. Modeling the semantics of scientific and technical texts for AIS and its theoretical foundations // Proceedings of the 8th All-Russian Scientific Conference “Digital Libraries: Advanced Methods and Technologies, Digital Collections” –  RCDL’ 2006. Suzdal. Russia. 2006.
4. Lukashevich N.V. Thesaurus in the problems of information retrieval // M.: Izdvo MSU. 2011. P. 495.
5. Kara-Ushanov V.Yu. Model “Entity-Relationship”: textbook. allowance // Ekb.: Electronic text edition, 2017. P. 64.
6. Pinyagina O.V. Lectures “Databases”: ER-model (entity-relationship) // [Electronic resource]. URL: http://kek.ksu.ru/EOS/BD/ER_model.html/ (accessed 10.12.2019).
7. IDEF1X methodology [Electronic resource]: URL: https://www.idef.com/idef1x-data-modelingmethod/ (accessed 09.12.2019).
8. Mark D., McGowan K. Methodology of structural analysis and design SADT // M.: Metatechnology, 1993. P. 240
9. Simakov K.V. Models and methods for extracting knowledge from texts in natural language / Dissertations for the degree of candidate of technical sciences. Specialty 05.13.17. Moscow. 2008.
10. Norman D. Semantic networks // Psychology of memory. – M.: Che Ro. 2000. P. 350-356.
11. Solomatin N.M. Information-semantic systems // M.: Higher school. 1989. P. 127.
12. Prolog // [Electronic resource]. URL: https:// en.wikipedia.org/wiki/Prolog/ (accessed 04.01.2021).
13. Kuzin E.S. Information technology and design of applied software systems. // Information technologies and computer systems of the Russian Academy of Sciences No. 3. 1996.
14. Kuzin E.S. Concepts of information technology of functionally oriented design of applied information systems. // Information technologies No. 1, 2000.
15. Vagin V.N., Mikhailov I.S. Ensuring the interoperability of information systems based onthe metamodeling approach and domain ontology // Proceedings of the Second International Conference “System Analysis and Information Technologies” – SAIT. 2007. Obninsk. Russia. P. 149-152.
16. Sidorova E.A. ontology-based approach to modeling the process of extracting information from text // Ontology of design. 2018. V.8. No. 1 (27). P. 134-151.
17. Description of the ontology method // [Electronic resource]. URL: https://ru.wikipedia.org/ wiki/Ontology_(computer science)/ (accessed 03.18.2021).
18. Gladun A.Ya. Ontologies in corporate systems // Corporate systems: zhurn. M.: Komizdat. 2006. P. 13-26.
19. Kuznetsov O.P., Sukhoverov V.S. Ontological approach to assessing the subject of a scientific text // Ontology of design. 2016. V. 6. No. 1 (19). P. 55-66.
20. Babanov A.M. Two modern approaches to semantic modeling – ORM and ERMM // Tomsk State University Bulletin. 2014. №3(28). P. 46-56.
21. Object Oriented Approach // [Electronic resource]. URL: https://www.tutorialspoint.com/system_analysis_ and_design/system_analyss_and_design_object_oriented_approach.html/ (accessed 03.18.2021).
22. Graham I. Object-Oriented Methods. Principles and practice. M.: William. 2004. P. 880.
23. Leonenkov A.V. Object-oriented analysis and design using UML and IBM Rational Rose. M.: Binom. Knowledge Laboratory. 2006. P. 320.
24. Nyi Nyi Htwe, Volkova G.D. Development of a formal description of the typology of statistical subject constraints in the conceptual modeling of applied problems. Vestnik MSTU Stankin. 2021. No. 2 (57). P. 13-19.
25. Nyi Nyi Htwe, Volkova G.D., Turbeeva T.B. Formal description of the classification and treatment of the conceptual model of the objectlevel substantive tasks. In the collection, the Digital economy: technology, governance, human capital. Materials of the III All-Russian Scientific and Practical Conference. 2020. P. 73-78.
26. Volkova G.D., Nyi Nyi Htve. Formal description of the procedure for processing a conceptual model. Materials of the XIII All-Russian Conference with international participation Mechanical Engineering: traditions and innovations (MIT- 2020), Collection of reports. Moscow, “MSTU “STANKIN”. 2020. 444. P. 298-305.
27. Volkova G.D. Philosophical aspects of simulation design and technological knowledge to create systems of design automation in engineering. Vestnik of MSTU Stankin. 2012. No. 1 (19). P. 141-144.
28. Tyurbeeva T.B., Volkova G.D., Semyachkova E.G., Vinarskaya G.A. Research of methods of classification and representation of knowledge in scientific and technical publications and technical documentation. Vestnik MSTU Stankin. 2018. No. 4 (47). P. 168-171.
29. Nyi Nyi Htwe, Galina D. Volkova, Tatyana B. Tyurbeeva, Khant Ko Zan. Processing Of Conceptual Models Of Subject Problems For Extracting Knowledge From Technical Documentation // 2021 IEEE Conference of Russian Young Researchers in Electrical and Electronic Engineering (ElConRus). IEEE. 2021. P. 2185-2189.
30. Volkova G.D., Nyi Nyi Htwe. Formal description of the classification and processing of a conceptual model of a specific level for an objective problem // XXVIII Conference “Mathematics. Computing. Education – 2021” MKO-2021. January 25-30. 2021: Abstracts., M.: 2021. 212. P. 48.
31. Volkova G.D. Methodology of automation of design and engineering activities in mechanical engineering / G.D. Volkova // Textbook. M.: MSTU “Stankin”. 2000. P. 81.
 

2024-74-1
2023-73-4
2023-73-3
2023-73-2

© ФИЦ ИУ РАН 2008-2018. Создание сайта "РосИнтернет технологии".