DocumentCode :
1437703
Title :
Parameter Estimation of Damped Power-Law Phase Signals via a Recursive and Alternately Projected Matrix Pencil Method
Author :
Chahine, Khaled ; Baltazart, Vincent ; Wang, Yide
Author_Institution :
Reconnaissance & Geophys. Group, Lab. Central des Ponts et Chaussees, Bouguenais, France
Volume :
59
Issue :
4
fYear :
2011
fDate :
4/1/2011 12:00:00 AM
Firstpage :
1207
Lastpage :
1216
Abstract :
We propose a novel algorithm based on the matrix pencil method to estimate the parameters of a class of signals modeled as damped power-law phase signals. This class arises primarily from the electromagnetic probing of dispersive geological and civil engineering materials as a consequence of the universal dielectric response. When stratified media are considered, direct application of conventional matrix-shifting methods is hindered not only by the nonlinear frequency dependency which destroys the desired shift-invariance property of the data matrix, but also by the stratified structure of the medium which introduces a cumulative effect. In this regard, the proposed algorithm restores recursively the Vandermonde structure of one mode vector at a time by means of a spline-interpolation technique and then orthogonally projects it to filter out its contribution before passing to another. The algorithm is tested on simulated and experimental data resulting from the probing of a stratified dispersive medium, and its performance is assessed against the Cramér-Rao lower bound. For the example of experimental data, collected from concrete cores by means of a cylindrical transition line, the permittivities at the reference frequency and the dispersion indices are determined using the new algorithm and compared with those of a nonlinear optimization scheme.
Keywords :
interpolation; matrix algebra; recursive estimation; signal processing; splines (mathematics); Cramér-Rao lower bound; Vandermonde structure; civil engineering materials; cylindrical transition line; damped power-law phase signals; data matrix; dielectric response; dispersive geological materials; electromagnetic probing; matrix-shifting methods; nonlinear optimization scheme; parameter estimation; permittivity; projected matrix pencil method; reference frequency; shift-invariance property; spline-interpolation technique; stratified dispersive medium; the nonlinear frequency dependency; Data models; Dielectrics; Dispersion; Estimation; Indexes; Mathematical model; Parameter estimation; Cramér-Rao lower bound (CRLB); Vandermonde structure; depth-variant model; electromagnetic characterization; frequency power law; time delay estimation;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2109359
Filename :
5704175
Link To Document :
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