A limit theorem for Bernoulli convolutions and the $\Phi$-variation of functions in the Takagi class
Abstract
We consider a probabilistic approach to compute the Wiener--Young -variation of fractal functions in the Takagi class. Here, the -variation is understood as a generalization of the quadratic variation or, more generally, the variation of a trajectory computed along the sequence of dyadic partitions of the unit interval. The functions we consider form a very wide class of functions that are regularly varying at zero. Moreover, for each such function , our results provide in a straightforward manner a large and tractable class of functions that have nontrivial and linear -variation. As a corollary, we also construct stochastic processes whose sample paths have nontrivial, deterministic, and linear -variation for each function from our class. The proof of our main result relies on a limit theorem for certain sums of Bernoulli random variables that converge to an infinite Bernoulli convolution.
Keywords
Cite
@article{arxiv.2102.02745,
title = {A limit theorem for Bernoulli convolutions and the $\Phi$-variation of functions in the Takagi class},
author = {Xiyue Han and Alexander Schied and Zhenyuan Zhang},
journal= {arXiv preprint arXiv:2102.02745},
year = {2021}
}