Title :
Parametric modeling with beamspread compensation and MIMO frequency domain inversion applied to fine saturated sands
Author :
Vandenplas, Steve ; Temsamani, Abdellatif Bey ; Lumori, Mikaya L D ; Cisneros, Zobeida ; Van Biesen, Leo
Author_Institution :
Dept. of ELEC, Vrije Univ., Brussels, Belgium
fDate :
7/1/2001 12:00:00 AM
Abstract :
A system identification technique is applied to estimate the intrinsic absorption and dispersion of two fine sands. The method is based on the parametric modeling of the wave propagation through a Plexiglas tank filled with the sediment under investigation. The applicability of various porous models is discussed. The viscoelastic constant Q model and viscoelastic rational form model are applied and compared. Closed form expressions describing the wave propagation are replaced by Debye series expansions with correction coefficients that consider the beamspread caused by the finite aperture of the emitter. A multiple input multiple output (MIMO) representation is used in conjunction with the maximum likelihood estimator (MLE) for the estimation of the sediment parameters. The estimated absorption and dispersion curves are depicted.
Keywords :
calibration; identification; oceanographic techniques; porous materials; sand; sediments; ultrasonic propagation; viscoelasticity; Debye series expansions; MIMO frequency domain inversion; Plexiglas tank; US wave propagation; beamspread; beamspread compensation; correction coefficients; dispersion curves; fine saturated sands; finite aperture; identification; intrinsic absorption; maximum likelihood estimator; multiple input multiple output; parametric modeling; porous models; sediment parameters; viscoelastic constant Q model; viscoelastic rational form mode; Absorption; Apertures; Elasticity; Frequency; MIMO; Maximum likelihood estimation; Parametric statistics; Sediments; System identification; Viscosity;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on