Abstract
We introduce the paradigm of chaotic mathematical circuitry which shows some similarity to the paradigm of electronic circuitry, especially in the frame of chaotic attractors for solving practical problems (generating hyperchaos; developing chaos based pseudo random number generator (CPRNG) and chaotic multistream PRNG; secure communication via synchronization). They can also be used in cryptography, generic algorithms in optimization, control, etc.
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CITATION STYLE
Lozi, R. (2014). Designing chaotic mathematical circuits for solving practical problems. International Journal of Automation and Computing, 11(6), 588–597. https://doi.org/10.1007/s11633-014-0839-9
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