Mathematics (Mar 2021)

Fractal Stochastic Processes on Thin Cantor-Like Sets

  • Alireza Khalili Golmankhaneh,
  • Renat Timergalievich Sibatov

DOI
https://doi.org/10.3390/math9060613
Journal volume & issue
Vol. 9, no. 6
p. 613

Abstract

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We review the basics of fractal calculus, define fractal Fourier transformation on thin Cantor-like sets and introduce fractal versions of Brownian motion and fractional Brownian motion. Fractional Brownian motion on thin Cantor-like sets is defined with the use of non-local fractal derivatives. The fractal Hurst exponent is suggested, and its relation with the order of non-local fractal derivatives is established. We relate the Gangal fractal derivative defined on a one-dimensional stochastic fractal to the fractional derivative after an averaging procedure over the ensemble of random realizations. That means the fractal derivative is the progenitor of the fractional derivative, which arises if we deal with a certain stochastic fractal.

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