Theory of chaos used in many different areas, such as electronic circuits [1-10], optics [11], economy [12] etc. Some chaotic systems can be realized using Arduino platform [13].
References
Rusyn, V., Sadli, M., Mamat, M., Mujiarto, M., and Sanjaya, W.S., (2020) Computer modelling of a new simple chaotic generator, Journal of Physics: Conference Series, 1477, p. 022010. DOI 10.1088/1742-6596/1477/2/022010
Rusyn, V., Mohamad, M.A., Purwandari, D., Mamat, M., Titaley, J., Pinontoan, B. (2020) Chaotic and Controlling Regimes of a New Modified Chua’s Generator. Journal of Advanced Research in Dynamical & Control Systems, Vol. 12, Issue 02, 556-561.
Rusyn, V., Skiadas, Ch. (2020) Threshold Method for Control of Chaotic Oscillations. Springer Proceedings in Complexity. Springer, pp. 217-229.
Lien C.-H., Vaidyanathan S., Sambas A., Sukono, Mamat M., Sanjaya W.S.M., Subiyanto (2018) A New Two-scroll Chaotic Attractor with Three Quadratic Nonlinearities, Its Adaptive Control and Circuit Design. IOP Conference Series: Materials Science and Engineering, 332, 012010.
Rusyn V., Purwandari D. (2020) Dynamical Analysis and Circuit Design for Malasoma System. International Journal of Quantitative Research and Modeling, Vol.1(4), 174-180
Rusyn, V., Mohamad, M., Titaley, J., Nainggolan, N., Mamat, M., (2020) Design, computer modelling, analysis and control of the new chaotic generator, Journal of Advanced Research in Dynamical & Control Systems, Vol. 12(02), 2306-2311. DOI: 10.5373/JARDCS/V12I2/S20201276
Rusyn, V., Skiadas H. Ch., Sambas, A., Mamat, M., Vaidyanathan, S. (2020) Process of pulse transformation of the analog nonlinear signals. Telecommunications and Radio Engineering, Vol 79(13), 1141-1147
Rusyn, V., Khrapko, S. (2019) Memristor: Modeling and research of information properties. Springer Proceedings in Complexity, 229-238.
Rusyn, V., (2017) Modeling and Research Information Properties of Rucklidge chaotic system using LabView, CHAOS Proceedings, 10th Chaotic Modeling and Simulation International Conference, pp. 739-744.
Sambas A., Vaidyanathan S., Mamat M., Mada Sanjaya W.S. (2018) A Six-term Novel Chaotic System with Hidden Attractor and Its Circuit Design. Studies in Systems. Decision and Control, Vol. 133, 365-373.
Rusyn, V., Samila, A., and Skiadas, Ch., (2020) Computer modeling and practical realization of chaotic circuit with a light-emitting diode, Fourteenth International Conference on Correlation Optics, Chernivtsi, pp. 113690D.
Rusyn, V., Savko, O., (2015) Modeling of Chaotic Behavior in the Economic Model, CHAOS Proceedings, 8th Chaotic Modeling and Simulation International Conference, pp. 705-712.
Rusyn, V., Subbotin, S. and Sambas, A. (2020) Analysis and experimental realization of the logistic map using Arduino Pro Mini. CEUR Workshop Proceedings, 2608, 300-310
Vaidyanathan S., Sambas A., Mohamed M.A., Mamat M., Mada Sanjaya W.S. (2018) A New Hyperchaotic Hyperjerk System with Three Nonlinear Terms, Its Synchronization and Circuit Simulation. International Journal of Engineering and Technology (UAE), 7, 1585-1592.
Kopp M., Kopp A. (2022) A New 6D Chaotic Generator: Computer Modelling and Circuit Design. Int. J. Eng. Technol. Innov., 12, 288-307.
Sambas, A., Mamat, M., Vaidyanathan, S., Mohamed M.A., Mada Sanjaya, W.S., (2018) A New 4-D Chaotic System with Hidden Attractor and Its Circuit Implementation. International Journal of Engineering and Technology (UAE), 7, 1245-1250. doi.org/10.14419/ijet.v7i3.9846