Using PIC18 Microcontrollers to Generate Chaotic Signals Based on Logistic Mapping
DOI:
https://doi.org/10.31861/sisiot2023.1.01012Keywords:
generator, logistic mapping, РІС18 microcontroller, scrambler, language information, signal, spectral representationAbstract
In this paper, simulation and hardware implementation of the device for generating chaotic signals based on logistic mapping using microcontrollers of the РІС18 series was carried out. The operation of the device was investigated in the mode of generating chaotic oscillations at different values of the control parameter λ. By certain hardware and software modification, this generator can be used as a voice signal encryption The results of simulation and experimental studies confirm the possibility of using PIC18 microcontrollers for the implementation of chaotic oscillation generators based on discrete mappings, as well as using these controllers in the hardware implementation of language information encryption devices.
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References
L. Kocarev, G. Jakimoski, “Pseudorandom bits generated by chaotic maps,” Fundamental Theory and Applications, IEEETransactions, vol.50(1), pp. 123-126, 2003.
Yu. Stasiev, K. Vasiuta, S. Zhenzhera “Informatsiini systemy na osnovi dynamichnoho khaosu,” Systemy ozbroiennia i viiskova tekhnika, Vol. 1, No 17, s. 134-138, 2009.
L. Acho, “Chaotic logistic map implementation in the PIC12F629 microcontroller,” in: 10th International IFAC Workshop on Programmable Devices and Embedded Systems, Poland, 2010, vol.50, issue 1, pp.167-170.
O. Hres, R. Politanskyi, A. Veryha, M. Ivanchuk, “Prystrii heneruvannia khaotychnykh syhnaliv na osnovi dyskretnykh odnomirnykh vidobrazhen,” in Conf. IV Mizhnarodnoi naukovo-praktychnoi konferentsii Fizyko-tekhnolohichni problemy radiotekhnichnykh prystroiv, zasobiv telekomunikatsii, nano- ta mikroelektroniky, Chernivtsi, 2014, ss. 83-84.
N. Pareek, V. Patidar, K.Sud, “Cryptography using multiple one-dimensional chaotic maps,” Commun. Nonlinear Sci. Numer. Simu, vol.10(7), pp.715–723, 2005.
A. Díaz-Méndez, J.V. Marquina-Pérez, M. Cruz-Irisson, R. Vázquez-Medina, J.L. Del-Río-Correa, “Chaotic noise MOS generator based on logistic map,” Microelectron. J., vol. 40, pp.638–640, 2009.
Y. Mao, W. Liu, Z. Li, P. Li, A. Halang, “A Chip Performing Chaotic Stream Encryption,” Studies in Computational Intelligence (SCI), vol. 42, pp.307–332, 2007.
O.V. Hres, A.D. Veryha, R.L. Politanskyi, O.V. Drobyk, “Aparatna realizatsiia prystroiu shyfruvannia movnoi informatsii,” Suchasnyi zakhyst informatsii, No.3, ss.71-77, 2014.
A-K. Maysa, A-J. Iman Qays, “Speech Encryption Using Chaotic Map and Blowfish Algorithms”, Journal of Basrah Researches (Sciences), Vol.( 39), No.( 2), pp. 68-76, 2013.
C. Cruz-Hernández, E. Inzunza-González, R. López-Gutiérrez, H. Serrano-Guerrero, E. García-Guerrero, “Encrypted audio communication based on synchronized unified chaotic systems”, World Academy of Science, Engineering & Technology, vol.42, pp.475-480, 2010.
A.G. Radwan, “On some generalized discrete logistic maps,” Cairo Univ.: J. Adv. Res., vol. 4, pp.163–171, 2013.
W.T. Gibson, W.C. Wilson, “Individual-based chaos: extensions of the discrete logistic model,” J. Theor. Biol., vol.339, pp.84–92, 2013.