English

Limit theorems for a class of stationary increments Levy driven moving averages

Probability 2016-03-25 v1

Abstract

In this paper we present some new limit theorems for power variation of kkth order increments of stationary increments L\'evy driven moving averages. In the infill asymptotic setting, where the sampling frequency converges to zero while the time span remains fixed, the asymptotic theory gives very surprising results, which (partially) have no counterpart in the theory of discrete moving averages. More specifically, we will show that the first order limit theorems and the mode of convergence strongly depend on the interplay between the given order of the increments, the considered power p>0p>0, the Blumenthal--Getoor index β(0,2)\beta \in (0,2) of the driving pure jump L\'evy process LL and the behaviour of the kernel function gg at 00 determined by the power α\alpha . First order asymptotic theory essentially comprises three cases: stable convergence towards a certain infinitely divisible distribution, an ergodic type limit theorem and convergence in probability towards an integrated random process. We also prove the second order limit theorem connected to the ergodic type result. When the driving L\'evy process LL is a symmetric β\beta-stable process we obtain two different limits: a central limit theorem and convergence in distribution towards a (1α)β(1-\alpha )\beta-stable totally right skewed random variable.

Keywords

Cite

@article{arxiv.1603.07382,
  title  = {Limit theorems for a class of stationary increments Levy driven moving averages},
  author = {Andreas Basse-O'Connor and Raphaël Lachièze-Rey and Mark Podolskij},
  journal= {arXiv preprint arXiv:1603.07382},
  year   = {2016}
}

Comments

arXiv admin note: substantial text overlap with arXiv:1506.06679