ULTRA WIDEBAND WAVE-BASED LINEAR INVERSION IN LOSSLESS LADDER NETWORKS
Author(s) -
Amir Shlivinski
Publication year - 2012
Publication title -
electromagnetic waves
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.437
H-Index - 89
eISSN - 1559-8985
pISSN - 1070-4698
DOI - 10.2528/pier12010804
Subject(s) - inversion (geology) , wideband , lossless compression , geology , acoustics , computer science , physics , seismology , algorithm , optics , data compression , tectonics
A wave-based inversion algorithm for the recovery of deviation in the values of elements of discrete lossless inductance- capacitance and capacitance-inductance ladder networks from their nominal values is formulated. The algorithm uses ultra wideband source excitation over the frequency range where forward and backward voltage and current waves propagate along the network. Employing a weak type scattering formulation renders the voltage wave re∞ection coe-cient to be a Z transform of the sequence of perturbation in the value of the elements. Inversion of the re∞ected date from the transformed domain to the spatial domain by Fourier type integration yields the element's perturbations and consequently, the actual elements of the network. Demonstrations of the algorithm performance on several test cases show its e-cacy as a non-destructive testing tool.
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