Abstract
AbstractNonparametric estimation of the covariance function and the power spectral density of uniformly spaced data from stationary stochastic processes with missing samples is investigated. Several common methods are tested for their systematic and random errors under the condition of variations in the distribution of the missing samples. In addition to random and independent outliers, the influence of longer and hence correlated data gaps on the performance of the various estimators is also investigated. The aim is to construct a bias-free estimation routine for the covariance function and the power spectral density from stationary stochastic processes under the condition of missing samples with an optimum use of the available information in terms of low estimation variance and mean square error, and that independent of the spectral composition of the data gaps. The proposed procedure is a combination of three methods that allow bias-free estimation of the desired statistical functions with efficient use of the available information: weighted averaging over valid samples, derivation of the covariance estimate for the entire data set and restriction of the domain of the covariance function in a post-processing step, and appropriate correction of the covariance estimate after removal of the estimated mean value. The procedures abstain from interpolation of missing samples as well as block subdivision. Spectral estimates are obtained from covariance functions and vice versa using Wiener–Khinchin’s theorem.
Funder
Max Planck Institute for Dynamics and Self-Organization (MPIDS)
Publisher
Springer Science and Business Media LLC
Reference43 articles.
1. R. Vio, T. Strohmer, W. Wamsteker, On the reconstruction of irregularly sampled time series. Publ. Astron. Soc. Pac. 112(767), 74–90 (2000). https://doi.org/10.1086/316495
2. M. Niedźwiecki, K. Cisowski, Adaptive scheme for elimination of background noise and impulsive disturbances from audio signals, in Proceedings of the Quatrozieme Colloque GRETSI (Juan-les-Pins, France), pp. 519–522 (1993)
3. S. Preihs, F.-R. Stöter, J. Ostermann, Low delay error concealment for audio signals, in 46th AES Conference on Audio Forensics (2012)
4. P. Stoica, E.G. Larsson, J. Li, Adaptive filter-bank approach to restoration and spectral analysis of gapped data. Astron. J. 120(4), 2163–2173 (2000). https://doi.org/10.1086/301572
5. R. Everson, L. Sirovich, Karhunen-Loève procedure for gappy data. J. Opt. Soc. Am. A 12, 1657–1664 (1995). https://doi.org/10.1364/JOSAA.12.001657