Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/52421
Título: Estimation of the population spectrum with replicated time series
Autores/as: Hernández-Flores, C. N. 
Artiles-Romero, J. 
Saavedra-Santana, Pedro 
Clasificación UNESCO: 240401 Bioestadística
120903 Análisis de datos
Palabras clave: Replicated time series
Spectral estimate
Average periodogram
Bootstrap
Mallows metric
Fecha de publicación: 1999
Publicación seriada: Computational Statistics and Data Analysis 
Resumen: A random sample of r objects from a certain population is considered, measuring for each of them and at the same time points a stationary process Xi(t) whose spectral distribution is absolutely continuous. Each spectral density function fi(ω) may be considered as a realization of a stationary process R(ω), for which a population spectrum f(ω) is defined as E[R(ω)]. Thus, r time series are available to estimate the population spectrum f(ω). It is well known that when a single time series is analysed, the periodogram is a poor estimate of the spectral density. However, when using replicated time series, the average periodogram behaves adequately as an estimate of the population spectrum if the number of objects is large. The asymptotic properties of the average periodogram are analysed and confidence intervals for the population spectrum are constructed. An alternative bootstrap method is proposed for the estimation of the population spectrum and the asymptotic validity, in the sense of Bickel and Freedman, is proved when the number of objects is large. Replicated time series simulated from a moving average process with random coefficients and confidence intervals are constructed for the population spectrum using the bootstrap approach. These intervals are compared with the intervals obtained by means of the asymptotic properties of the average periodogram.
URI: http://hdl.handle.net/10553/52421
ISSN: 0167-9473
DOI: 10.1016/S0167-9473(98)00099-1
Fuente: Computational Statistics and Data Analysis [ISSN 0167-9473], v. 30 (3), p. 271-280
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