1. Agbo, F. J., Oyelere, S. S., Suhonen, J., & Tukiainen, M. (2019). Identifying potential design features of a smart learning environment for programming education in Nigeria. International Journal of Learning Technology, 14(4), 331–354. http://dx.doi.org/10.1504/IJLT.2019.10655110.1504/IJLT.2019.106551
2. Basalin, P. D., Timofeev, A. E., Kumagina, E. A., Neimark, E. A., Fomina, I. A., & Chernyshov, N. N. (2018). Implementation of a hybrid intellectual production-type learning environment. Modern Information Technologies and IT Education, 1(14), 256–267.
3. Bershadsky, A. M., Bozhday, A. S., & Mkrtchyan, V. S. (2016). Principles of building a generally available self-adapting distance learning system based on the model of variability and service-oriented architecture. Information Technologies, 2(22), 146–153.
4. Bonner, D., Walton J., Dorneich, M. C., Gilbert, S. B., Winer, E., & Sottilare, R. A. (2015). The development of a testbed to assess an intelligent tutoring system for teams. In 17th International Conference on Artificial Intelligence in Education, AIEDWS 2015; CEUR Workshop Proceedings.
5. Cheng, X., Jianshan Sun, J., & Zarifis, A. (2020). Artificial intelligence and deep learning in educational technology research and practice. British Journal of Educational Technology, 51(5), 1653–1656. https://doi.org/10.1111/bjet.1301810.1111/bjet.13018