CONCEPT OF BUILDING AND USING THE DIGITAL KNOWLEDGE PLATFORM ON THE SPECIALTY

Константин Александрович Метешкин, Ольга Игоревна Морозова

Abstract


The paper proposed the concept of building and using the digital knowledge platform on the specialty. Experimental methods, together with the method of simulation, ensure the reliability of the obtained theoretical results and give confidence in the creation and use of digital knowledge platforms in specific specialties at the main departments. The digital knowledge platform is a special way organized and interconnected models of educational disciplines, which isomorphically reflect the content of the curriculum training programs. The partial implementation and experience of using the digital knowledge platform in individual disciplines have shown that the creation and maintenance of such platforms require certain resource costs. At the same time, the transition to an innovative training technology based on digital knowledge platforms will make it possible to move away from the traditional anthropocentric training model to a more progressive system-synergetic model that takes into account the capabilities of modern information technologies. The results of experimental studies conducted to clarify the possibility of students to create models of their knowledge showed that students are able to create models of their knowledge, which can be taken as a basis for the formation of a generalized model of training knowledge, which is the main element of digital knowledge platforms. In addition, within the framework of the concept being developed, another new term “plite” was introduced, the semantic part of which denotes a knowledge platform for the specialty. The technology of creating the plites should obviously be similar to the technology of creating the sites, and the peculiarity should be that their structures were isomorphic to the structures of curriculum, and the content part should be used exclusively for teaching. Then, fully developed plites for specific specialties will be independent units of educational knowledge that can be used for educational purposes by other higher educational institutions.


Keywords


modern systems; education; specialty; educational process; digital knowledge platforms

References


Informational singularity. Available at: http://scientifically.info/blog/2011-12-19-2 (accessed January 04, 2019).

Коrоtаеv, А. V. The singularity of the XXI century in the context of the Great History: a mathematical analysis. Journal of Big History, 2018, vol. 2, no. 3, pp. 17-71.

Tesler, G. S., & Koss, V. A. System-cybernetic approach to the analysis of the functions of active objects for their implementation in modern technologies, Mathematical Machines and Systems, 2006, vol. 1, no. 2, pp. 25-35.

Konysheva, A. V., Ibragimova, E. N. Training of Engineers in Mathematics at University on the Basis of the Information Cybernetic Approach. Eurasia Journal of Mathematics, Science and Technology Education, 2017, vol. 13, no. 8, pp. 4379-4391.

Meteshkin, K. A. Cybernetic pedagogy: theoretical bases of education management on the basis of integrated intelligence. Kharkov, ISU Publ., 2004. 400 p.

Martin, B., Mitroic, A. Automatic problem generation in constraint-based tutors. Intelligent Tutoring Systems, Berlin Heidelberg, Springer Publ., 2002, pp. 388-389.

Savin-Baden, M. A practical guide to problem-based learning online. New York, Routledge Publ., 2007. 151 p.

Christensen, C. M., Eyring, H. J. The innovative university: Changing the DNA of higher education from the inside out. San Francisco, Ca, Jossey-Bass Publ., 2011. 512 p.

Meteshkin, K. A., Sokolov, O. Yu., Morozova, O. I. and others. Cybernetic pedagogy: IT-technologies in education and training in universities. Theory of practice, Kharkov, 2014, KHNАME. 243 p.

Meteshkin, K. A., Kon, D. A. From student to professor: “Live” autobiographical educational visual book, Kharkov, KHNАME Publ., 2018. 363 p.

Greasley, Andrew. Simulation modelling for business, Routledge, 2017. 230 p.

Macal, C. M. Everything you need to know about agent-based modelling and simulation, Journal of Simulation, 2016, vol. 10(2), pp. 144-156. Doi: 10.1057/jos.2016.7.

A. N. Beketov KNUME Digital Repository. Available at: http://eprints.kname.edu.ua/ (accessed January 04, 2019).

The site of the scientific and technical library of the National Aerospace University. Available at: http://library.khai.edu/ (accessed January 04, 2019).

Department site. Available at: http://www.kaf-gis.kh.ua (accessed January 04, 2019).

Shynkaruk, V. D., Rakovskiy, H. V., Meteshkin, K. O. A systematic approach to the study of integration processes in higher education in Ukraine. Higher school, 2008, no. 9, pp. 12-28.

Babaev, V. N. The creation of an intellectual property exchange in the field of science and education. Theory and practice of social systems management: philosophy, psychology, pedagogy, sociology, 2013, no. 2, pp. 120-126.

Experiment. Available at: http://kaf-gis.kh.ua/eksperiment (accessed January 04, 2019).




DOI: https://doi.org/10.32620/reks.2019.1.08

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