Basic properties and prediction of max-ARMA processes

Citation
A. Davis, Richard et I. Resnick, Sidney, Basic properties and prediction of max-ARMA processes, Advances in applied probability , 21(4), 1989, pp. 781-803
ISSN journal
00018678
Volume
21
Issue
4
Year of publication
1989
Pages
781 - 803
Database
ACNP
SICI code
Abstract
A max-autoregressive moving average (MARMA(p, q)) process {Xt} satisfies the recursion for all t where . i, , and {Zt} is i.i.d. with common distribution function .1,. (X): = exp {.. x.1} for . Such processes have finite-dimensional distributions which are max-stable and hence are examples of max-stable processes. We provide necessary and sufficient conditions for existence of a stationary solution to the MARMA recursion and we examine the reducibility of the process to a MARMA(p., q.) with p. <p or q. < q. After introducing a natural metric between two jointly max-stable random variables, we consider the prediction problem for MARMA processes. Assuming that X1, ., Xn have been observed, we restrict our class of predictors to be max-linear, i.e. of the form , and find b1, ., bn to minimize the distance between this predictor and Xn+k for k 1. The optimality criterion is designed to minimize the probability of large errors and is similar in spirit to the dispersion criterion adopted in Cline and Brockwell (Stoch. Proc. Appl. 19 (1985), 281-296) for the prediction of ARMA processes with stable noise. Most of our results remain valid for the case when the distribution of Z1 is only in the domain of attraction of .1,.. In addition, we give a naive estimation procedure for the . 's and the . 's which, with probability 1, identifies the true parameter values exactly for n sufficiently large.