ELECTRONIC SIMULATORS – AN IMPORTANT RESOURCE MODERNIZATION OF PROFESSIONAL PEDAGOGICAL EDUCATION
DOI: 10.23951/1609-624X-2021-5-69-77
Introduction. The need to modernize the educational process in Russia is undeniable. Modernization of pedagogical professional education involves its adaptation to the changed socio-economic and state-political conditions of Russia’s development and the development of the experience of modernization of the educational sphere accumulated by other countries. In a modern educational organization, information and communication infrastructure is one of the main components of the educational process, which has a wide range of didactic electronic educational resources (ESR) as a practice-oriented tactic for optimizing the educational process. The aim is to identify approaches to improving the efficiency of the educational process based on the use of electronic simulators in the training of future specialists. Material and methods. The main sources of the conceptual design of fundamentally new e-learning resources-educational content, pedagogical tools and innovative forms of its development was the experience of professional training of students of “South Ural State Technical College”, bachelor and master degree students of Professional Pedagogical Institute of Russian State Vocational Pedagogical University in the direction of training 44.04.44 Vocational training in the framework of the specialty “Information Security Management in Professional Educational Institutions”; the process of integrative involvement of employers in the development of electronic media simulators; practical experience of forming practice-oriented professional competences of students. The main methods of research are theoretical analysis of the published material on the integration of the implementation of the ESM-ensure high-quality implementation of the regulations of the federal state educational standards 3 ++ for professional training of bachelors and undergraduates. Results and discussion. We have analyzed the materials of publications on the problem of bringing professional education to the modern needs of the labor market, the main difficulties of which are associated with its rather complex internal semantics, including several significant levels of hierarchy and connections between different types of very fragmented information that is not acceptable enough for making effective decisions, including in the conditions of forced use of distance learning. From the standpoint of reliability theory, it is almost impossible to hope for encouraging results without a scientifically-based approach to development within the framework of qualimetric digitalization based on the use of resources from various content platforms and cross-platform ERM templates. A special role in the light of the often forced use of distance learning belongs to such pedagogical tools as an electronic simulator (ES), designed for the interrelated performance of three main functions-diagnostic, training, and educational-when working out practical skills of students, forming their skills of motor-reflex and cognitive actions in difficult situations, understanding the essence of the processes and their mutual dependence. Implementation on the basis of CodeRunner plugin (V3.3.0) for Moodle multiplayer FLOOR in the provision of quality of formation of universal and professional competencies of vocational education students in these areas has allowed to reveal that the use of ES contributes to the growth of educational achievements of students, at least 15 %, which, in turn, affects the increase of the level (degree) of the formation of their competence, predetermining improving the efficiency of the educational process, improvement of its constituent elements. Thus in addition to increasing the average educational achievements of students still recorded an increase of 18 % and median characteristics, then there is a corresponding decrease in the proportion of students with high handles in replies to questions of control tests. Effective modernization of the educational process of pedagogical professional education, in our opinion, largely depends on the integrative implementation of the use of innovative platforms of various architectures and cross-platform templates of EOR-educational content of pedagogical tools, based within the framework of the modern teaching paradigm on the conceptual provisions and methods of pedagogy, measurements, mathematical modeling and scientific and analytical statistics of the qualimetric approach. The article analyzes the trends in the use of electronic educational resources (EER) to improve the practice-oriented component of the component of professional education. One of the directions in the light of often forced distance learning is the use of media content of electronic simulators (ES), designed to form the skills of motor-reflex and cognitive actions in complex situations, understanding the essence of the processes on the basis of the interrelated performance of three main functions-diagnostic, training, educational in the development of practical skills of students. Conclusion. The resource capabilities of verifying the variants of content platform architectures and cross-platform templates of such educational tools of EOR as ES, as well as innovative forms of their development and implementation, allow us to hope for encouraging results in finding ways to improve the efficiency of the educational process of professional educational organizations (VET), timely leveling of the contradiction between the requirements of employers of the modern post-industrial society and the level of formation of professional competencies of VET graduates.
Keywords: electronic educational resources, modernization of the educational sphere, professional competence, pedagogical tools, information search, professional educational organization
References:
1. Solov’ev V. I. Metody optimal’nykh resheniy: uchebnoye posobiye [Methods of optimal solutions: textbook]. Moscow, Financial University Publ., 2012. 364 p. (in Russian). URL: http://www2.rsuh.ru/binary/2631761_42.1412840525.10196.pdf (accessed 13 January 2021).
2. Romero C., Ventura S. Educational Data Mining: A Review of the State-of-the-Art. IEEE Transaction on Systems, Man, and Cybernetics, Part C: Applications and Reviews. 2010. 40 (6), рр. 601–618.
3. Akhmadiyev F. G., Gilfanov R. M. Matematicheskoye modelirovaniye i metody optimizatsii: uchebnoye posobiye [Mathematical modeling and optimization methods: a textbook]. Kazan, Kazan State University of Architecture and Engineering Publ., 2017. 178 p. (in Russian). URL: https://www.kgasu.ru/upload/iblock/97b/UP_AkhmadieviGilfanov.hpdf (accessed 14 January 2021).
4. Tarasevich Yu. Yu. Matematicheskoye i komp’yuternoye modelirovaniye. Vvodnyy kurs [Mathematical and computer modeling. Introductory course]. Moscow, LIBROCOM Publ., 2013. 152 p. (in Russian).
5. Likhtensteyn V. E. Diskretnost’ i sluchaynost’ v ekonomiko-matematicheskikh zadachakh [Discreteness and randomness in economic and mathematical problems]. Moscow, Nauka Publ., 1972. 375 p. (in Russian).
6. Belevitin V. A., Rudnev V. V., Giss I. E. The qualimetric aspect of digitalization in the formation of prоfessional competencies of university graduates. Advances in Economics, Business and Management Research, 2019, vol. 105, pp. 564–568.
7. Belevitin V., Smyrnov Ye., Kovalenko S. et al. Modeling of the Energy Potential Saving in the Production of Seamless Pipes. Journal of Chemical Technology and Metallurgy, 2017, no 4, pp. 718–723.
8. Smyrnov Ye., Belevitin V., Skliar V. Application of Numerical Model of Continuous Cast Bloom Crystallization to Improve the Efficiency of Mechanical Soft Reduction Technology. Materials Science Forum Trans Tech Publications, 2019, vol. 946, pp. 684–689.
9. Belevitin V. A., Bogatenkov S. A., Rudnev V. V. et al. Integrated Approach to Modeling IC Competence in Students. International Journal of Engineering & Technology, 2018, vol. 7, no. 4 (38), pp. 60–62.
10. Gafarova Ye., Belevitin V., Korchemkina Yu. The Approbation of a Mathematical Model of the Influence of Three-Level Semantic Representation of a Educational Message on the Dynamics of Students’ Creativity. International Journal of Engineering & Technology, 2018, vol. 7, no. 4 (38), pp. 171–173.
11. Belevitin A. V., Gafarova Ye. A., Korchemkina Yu. V. et al. Influence of Ternary Presentation of Educational Information on Enhancing Students’ Creativity. European Social Journal, 2017, no. 6, pp. 194–200.
12. Bogatenkov S. A., Gnatyshina E. A., Belevitin V. A. Kompetentnostno-oriyentirovannoye upravleniye podgotovkoy kadrov v usloviyakh elektronnogo obucheniya [Competence-oriented management of water training in the context of e-learning]. Chelyabinsk, YuUrGGPU Publ., 2017. 155 p. (in Russian).
13. Bogatenkov S. A., Belevitin V. A., Khasanova M. L. Management Based on Model of Competencies when Introducing Innovative Information Technology. International Journal of Engineering & Technology, 2018, vol. 7, no. 4 (38), pp. 78–81.
14. Kuznetsov N. A., Mikrin E. A., Kul’ba V. V. Informatsionnaya bezopasnost’ sistem organizatsionnogo upravleniya. Teoreticheskiye osnovy [Information security of organizational management systems. Theoretical foundations]. Moscow, Nauka Publ., 2006. 424 p. (in Russian).
15. Sabanov A. G. Autentifikatsiya pri elektronnom obmene dokumentami [Authentication in electronic document exchange]. Doklady Tomskogo gosudarstvennogo universiteta sistem upravleniya i radioelektroniki – Proceedings of TUSUR University, 2011, no. 2 (24), pp. 263–266 (in Russian).
16. Sabanov A. G. Kontseptsiya modelirovaniya protsessov autentifikatsii [The concept of modeling the processes of authentication]. Doklady Tomskogo gosudarstvennogo universiteta sistem upravleniya i radioelektroniki – Proceedings of TUSUR University, 2013, no. 3 (29), pp. 71–75 (in Russian).
17. Shubinsky I. B. Funktsional’naya nadezhnost’ informatsionnykh sistem [Functional reliability of information systems]. Ul’yanovsk, Pechatnyy dvor Publ., 2012. 296 p. (in Russian).
18. EOR kak otkrytye obrazovatel’nye modul’-mul’timedia-sistemy [EOR as an open educational module-multimedia-system-topics] (in Russian). URL: https://nsportal.ru/vu/fakultet-pedagogicheskogoob-razovaniya/or-ganizatsiya-uchebnoi-deyatel-nosti-s-ispolzovaniem-elek-1 (accessed 13 January 2021).
19. EOR novogo pokoleniya v voprosakh i otvetakh [New generation EOR in questions and answers] (in Russian). URL: http://window.edu.ru/resource/957/63957/files/EOR_NP_v_voprosah_i_otvetah-1.Pdf (accessed 15 January 2021).
20. Drovnikova I. G., Butsynskaya T. A., Orlov P. A. Rol’ i mesto sovremennykh komp’yuternykh tekhnologiy obucheniya v sovershenstvovanii upravleniya podgotovkoy spetsialistov dlya sistemy bezopasnosti [The Role and place of modern computer technology to improve the management training security]. Vestnik Voronezhskogo instituta MVD RF, 2008, no. 3, pp. 55–60 URL: http://cyberleninka.ru/article/n/rol-i-mesto-sovremennyh-kompyuternyh-tehnologiy-obucheniya-v-so-vershenstvovanii-upravleniya-podgotovkoy-spetsialistov-dlya-sistemy (accessed 20 January 2021) (in Russian).
21. Vorontsov V. K., Polukhin P. I., Belevitin V. A., Brinza V. V. K resheniyu ob’’yemnoy zadachi statsionarnogo plasticheskogo teche niya metalla metodom koordinatnoy setki [To the solution of the volume problem of stationary plastic flow of metal by the coordinate grid method]. Izvestiya vuzov. Chernaya metallurgiya – Izvestiya. Ferrous Metallurgy, 1976, no. 9, pp. 77–80 (in Russian).
22. Minayev A. A., Belevitin V. A., Smirnov E. N. Raschet parametrov plasticheskogo formoizmeneniya sortovykh zagotovok [Calculation of the parameters of plastic shaping of billets]. Izvestiya vuzov. Chernaya metallurgiya – Izvestiya. Ferrous Metallurgy, 1990, no. 12, pp. 26–28 (in Russian).
23. Vorontsov V. K., Atef Yu. S., Brinza V. V. et al. Issledovaniye poley peremeshcheniy pri prokatke kvadratnoy polosy v oval’nom kalibre [Investigation of displacement fields during rolling of a square strip in an oval caliber]. Izvestiya vuzov. Chernaya metallurgiya – Izvestiya. Ferrous Metallurgy, 1977, no. 5, pp. 101–105 (in Russian).
24. Brazhnikov A. I., Belevitin V. A., Brazhnikov F. I. et al. Ob ul’trazvukovom kontrole skorosti potoka zhidkosti bez rasstykovki truboprovoda po metodu N. I. Brazhnikova [On ultrasonic control of the fluid flow velocity without undocking the pipeline according to the method of N. I. Brazhnikov]. Inzhenerno-fizicheskiy zhurnal – Journal of Engineering Physics and Thermophysics, 2006, vol. 79, no. 2, pp. 131–138 (in Russian).
25. Gafarov V. F. Razrabotka mnogopol’zovatel’skikh trenazherov v usloviyakh obespecheniya informatsionnoy bezopasnosti obrazovatel’noy organizatsii [Development of multiuser simulators in the conditions of ensuring information security of an educational organization]. Chelyabinsk, YUGSPU Publ., 2019 (in Russian).
26. Silakov D. V. Ispol’zovaniye apparatnoy virtualizatsii v kontekste informatsionnoy bezopasnosti [The use of hardware virtualization in the context of information security]. Trudy ISP RAN, 2011, no. 9 (in Russian). URL: https://cyberleninka.ru/article/n/ispolzovanie-apparatnoy-virtualizatsii-v-konteks-te-informatsionnoy-bezopasnosti (accessed 22 January 2021).
27. Autentifikatsiya. Teoriya i praktika. Obespecheniye bezopasnogo dostupa k informresursam [Authentication. Theory and practice. Ensuring secure access to information resources]. By edited A. A. Shelupanova, S. L. Gruzdeva, Yu. S. Nakhaeva. Moscow, Goryachaya liniya-Telekom Publ., 2009. 552 p. (in Russian).
28. Demchenko V. V. Issledovaniye mody i mediany rezul’tatov EGE po matematike [The study of the mode and median of the results of the Unified State Exam in mathematics] (in Russian). URL: https://moluch.ru/young/archive/12/985/ (accessed 22 January 2021).
29. Krylova O. N., Boitsova E. G. Priyemy formiruyushchego otsenivaniya. Metodicheskiy konstruktor [Methods of formative assessment. Methodical constructor]. Moscow, Russkoye slovo Publ., 2016 (in Russian).
Issue: 5, 2021
Series of issue: Issue 5
Rubric: TEACHER EDUCATION
Pages: 69 — 77
Downloads: 639