• DocumentCode
    2975682
  • Title

    MCMC and EM-based methods for inference in heavy-tailed processes with α-stable innovations

  • Author

    Godsill, Simon

  • Author_Institution
    Dept. of Eng., Cambridge Univ., UK
  • fYear
    1999
  • fDate
    1999
  • Firstpage
    228
  • Lastpage
    232
  • Abstract
    In this paper we present both stochastic and deterministic iterative methods for inference about random processes with symmetric stable innovations. The proposed methods use a scale mixtures of normals (SMiN) representation of the symmetric stable law to express the processes in conditionally Gaussian form. This allows standard procedures for dealing with the Gaussian case to be re-used directly as part of the scheme. In contrast with other recently published work on the topic, we propose a novel hybrid rejection sampling method for simulating the scale parameters from their full conditional distributions, making use of asymptotic approximations for the tail of a positive stable distribution when rejection rates are too high. This hybrid approach potentially leads to improved performance compared with straightforward rejection sampling or Metropolis-Hastings (M-H) approaches. The methods can be applied to any model with symmetric stable terms, but we illustrate their application to linear models and present simulations for AR time series with stable innovations
  • Keywords
    Markov processes; Monte Carlo methods; autoregressive processes; higher order statistics; iterative methods; random processes; signal sampling; time series; α-stable innovations; AR time series; MCEM-based methods; MCMC-based methods; Markov chain Monte Carlo expectation maximisation; Monte Carlo expectation maximisation; SMiN representation; deterministic iterative methods; full conditional distributions; heavy-tailed processes; higher order statistics; hybrid rejection sampling method; linear models; positive stable distribution; random processes; scale mixtures of normals; signal processing; stochastic iterative methods; symmetric stable innovations; Density functional theory; Econometrics; Iterative methods; Monte Carlo methods; Random variables; Sampling methods; Signal processing; Stochastic processes; Tail; Technological innovation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Higher-Order Statistics, 1999. Proceedings of the IEEE Signal Processing Workshop on
  • Conference_Location
    Caesarea
  • Print_ISBN
    0-7695-0140-0
  • Type

    conf

  • DOI
    10.1109/HOST.1999.778731
  • Filename
    778731