English

Functional Convergence of Linear Sequences in a non-Skorokhod Topology

Probability 2012-09-07 v1

Abstract

In this article, we prove a new functional limit theorem for the partial sum sequence S[nt]=i=1[nt]XiS_{[nt]}=\sum_{i=1}^{[nt]}X_i corresponding to a linear sequence of the form Xi=j\bZcjξijX_i=\sum_{j \in \bZ}c_j \xi_{i-j} with i.i.d. innovations (ξi)i\bZ(\xi_i)_{i \in \bZ} and real-valued coefficients (cj)j\bZ(c_j)_{j \in \bZ}. This weak convergence result is obtained in space \bD[0,1]\bD[0,1] endowed with the SS-topology introduced in Jakubowski (1992), and the limit process is a linear fractional stable motion (LFSM). One of our result provides an extension of the results of Avram and Taqqu (1992) to the case when the coefficients (cj)j\bZ(c_j)_{j \in \bZ} may not have the same sign. The proof of our result relies on the recent criteria for convergence in Skorokhod's M1M_1-topology (due to Louhichi and Rio (2011)), and a result which connects the weak SS-convergence of the sum of two processes with the weak M1M_1-convergence of the two individual processes. Finally, we illustrate our results using some examples and computer simulations.

Keywords

Cite

@article{arxiv.1209.1147,
  title  = {Functional Convergence of Linear Sequences in a non-Skorokhod Topology},
  author = {Raluca Balan and Adam Jakubowski and Sana Louhichi},
  journal= {arXiv preprint arXiv:1209.1147},
  year   = {2012}
}

Comments

30 pages, 6 figures