A Microwave Tomographic Imaging Approach for Multibistatic Configuration: The Choice of the Frequency Step

This paper deals with the application of a frequency-domain microwave-tomography-imaging algorithm to a multibistatic configuration in ground-penetrating-radar applications. First, the authors formulate the inverse problem as a linear one by exploiting the Born approximation. Then, the reconstructio...

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Veröffentlicht in:IEEE transactions on instrumentation and measurement 2006-12, Vol.55 (6), p.1926-1934
Hauptverfasser: Persico, R., Soldovieri, F., Leone, G.
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creator Persico, R.
Soldovieri, F.
Leone, G.
description This paper deals with the application of a frequency-domain microwave-tomography-imaging algorithm to a multibistatic configuration in ground-penetrating-radar applications. First, the authors formulate the inverse problem as a linear one by exploiting the Born approximation. Then, the reconstruction capabilities of the solution algorithm are investigated, and an optimal frequency step to be adopted for the reconstruction is discussed and determined. Finally, inversion results are presented with synthetic data obtained from time-domain simulations and then Fourier transformed in frequency domain
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subjects Algorithms
Approximation methods
Born approximation
Born approximation (BA)
Dielectrics
Electromagnetic scattering
electromagnetic scattering inverse problems
Fourier analysis
Frequency
Ground penetrating radar
Image reconstruction
Instrumentation
Inverse problems
Microwave imaging
microwave tomography
Microwaves
Optimization
Radar imaging
Reconstruction
Tomography
title A Microwave Tomographic Imaging Approach for Multibistatic Configuration: The Choice of the Frequency Step
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