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JOURNALS // University proceedings. Volga region. Physical and mathematical sciences // Archive

University proceedings. Volga region. Physical and mathematical sciences, 2020 Issue 4, Pages 3–21 (Mi ivpnz57)

Mathematics

The solution of a vector 3D inverse diffraction ploblem on a 3D heterogeneous body by a two-sweep method

M. Yu. Medvedik, Yu. G. Smirnov, A. A. Tsupak

Penza State University, Penza

Abstract: Background. The purpose of this work is justification and implementation of the two-step approach for solving vector 3D inverse problem of diffraction by a heterogeneous solid with a piecewise smooth permittivity.
Materials and methods. The original boundary value problem for Maxwell's equations is reduced to a system of integro-differential equations; the system is studied using potential theory and Fourier transform.
Results. The integral formulation of the vector inverse problem of diffraction is given; uniqueness of a solution to the integro-differential equation of the first type is established in special function spaces; non-iterative approach for solving the inverse problem is implemented; several techniques for solutions' refinement are also implemented.
Conclusions. The two-sweep method is an efficient technique for solving vector 3D problems of near-field tomography.

Keywords: vector 3D inverse problem of diffraction, reconstruction of unknown òpermittivity, integro-differential equations, uniqueness of solutions, two-sweep method.

UDC: 517.968, 517.983.37

DOI: 10.21685/2072-3040-2020-4-1



© Steklov Math. Inst. of RAS, 2024