Convergence and accuracy of near-field-corrected iterative physical optics for scattering by imperfectly conducting and dielectric objects

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2
Citations

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2

초록

This communication investigates the convergence behaviour and accuracy of a near-field corrected iterative physical optics scheme for scatterings by imperfectly conducting and dielectric objects. The scatterings by large and complex impedance surface bodies such as fixed wing aircraft, rotatory wing aircraft, tank, vessel, and boat are computed and compared with those of a full-wave method. Several RF characteristics of a Von-Karman radome are also analysed and compared as a wave penetration application. Based on these comparisons, the near-field correction effect is examined on the accuracy of the iterative physical optics scheme.

키워드

electromagnetic wave scatteringradomesphysical opticsiterative methodsiterative physical opticsdielectric objectsconvergence behaviourcomplex impedance surface bodiesfixed wing aircraftrotatory wing aircraftwave penetration applicationnear-field correction effectconducting objectsfull-wave methodRF characteristicsVon-Karman radomeELECTROMAGNETIC SCATTERING
제목
Convergence and accuracy of near-field-corrected iterative physical optics for scattering by imperfectly conducting and dielectric objects
저자
Rim, Jae-WonKoh, Il-Suek
DOI
10.1049/iet-map.2019.0871
발행일
2020-08-12
유형
Article
저널명
IET Microwaves, Antennas and Propagation
14
10
페이지
999 ~ 1005