Real-time tracking of moving objects from scattering matrix in real-world microwave imaging

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6

초록

The problem of the real-time microwave imaging of small, moving objects from a scattering matrix without diagonal elements, whose elements are measured scattering parameters, is considered herein. An imaging algorithm based on a Kirchhoff migration operated at single frequency is designed, and its mathematical structure is investigated by establishing a relationship with an infinite series of Bessel functions of integer order and antenna configuration. This is based on the application of the Born approximation to the scattering parameters of small objects. The structure explains the reason for the detection of moving objects via a designed imaging function and supplies some of its properties. To demonstrate the strengths and weaknesses of the proposed algorithm, various simulations with realdata are conducted.

키워드

Kirchhoff migrationmoving objectsscattering matrixBessel functionsimulation resultsLINEAR SAMPLING METHODINVERSE SCATTERINGBIFOCUSING METHODTOMOGRAPHYANOMALIESTARGETS
제목
Real-time tracking of moving objects from scattering matrix in real-world microwave imaging
저자
Son, Seong-HoLee, Kwang-JaePark, Won-Kwang
DOI
10.3934/math.2024662
발행일
2024-06
유형
Article
저널명
AIMS MATHEMATICS
9
6
페이지
13570 ~ 13588