Numerical comparison of iterative and functional-analytical algorithms for inverse acoustic scattering

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1. Verfasser: Shurup, A. S.
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Veröffentlicht: 2022
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author Shurup, A. S.
author_facet Shurup, A. S.
contents In this work the numerical solution of acoustic tomography problem based on the iterative and functional-analytical algorithms is considered. The mathematical properties of these algorithms were previously described in works of R.G.Novikov for the case of the Schrödinger equation. In the present work, for the case of two-dimensional scalar Helmholtz equation, the efficiency of the iterative algorithm in reconstruction of middle strength scatterers and advantages of the functional-analytical approach in recovering strong scatterers are demonstrated. A filtering procedure is considered in the space of wave vectors, which additionally increases the convergence of the iterative algorithm. Reconstruction results of sound speed perturbations demonstrate the comparable noise immunity and resolution of the considered algorithms when reconstructing middle strength scatterers. A comparative numerical investigation of the iterative and functional-analytical algorithms in inverse acoustic scattering problems is implemented in this work for the first time.
format Preprint
id arxiv_https___arxiv_org_abs_2201_04542
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Numerical comparison of iterative and functional-analytical algorithms for inverse acoustic scattering
Shurup, A. S.
Numerical Analysis
Computational Physics
Medical Physics
35R30, 65N21
In this work the numerical solution of acoustic tomography problem based on the iterative and functional-analytical algorithms is considered. The mathematical properties of these algorithms were previously described in works of R.G.Novikov for the case of the Schrödinger equation. In the present work, for the case of two-dimensional scalar Helmholtz equation, the efficiency of the iterative algorithm in reconstruction of middle strength scatterers and advantages of the functional-analytical approach in recovering strong scatterers are demonstrated. A filtering procedure is considered in the space of wave vectors, which additionally increases the convergence of the iterative algorithm. Reconstruction results of sound speed perturbations demonstrate the comparable noise immunity and resolution of the considered algorithms when reconstructing middle strength scatterers. A comparative numerical investigation of the iterative and functional-analytical algorithms in inverse acoustic scattering problems is implemented in this work for the first time.
title Numerical comparison of iterative and functional-analytical algorithms for inverse acoustic scattering
topic Numerical Analysis
Computational Physics
Medical Physics
35R30, 65N21
url https://arxiv.org/abs/2201.04542