Application of IPO method to calculate scattering by conducting and dielectric objects

To consider a large and complex conducting or dielectric structure, an iterative physical optics method is proposed. The scheme is numerically and experimentally verified for a scattering and radome problems.

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Published in2016 URSI Asia-Pacific Radio Science Conference (URSI AP-RASC) pp. 1569 - 1571
Main Authors Il-Suek Koh, Jae-Won Rim, Woo-Tae Kim
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.08.2016
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Abstract To consider a large and complex conducting or dielectric structure, an iterative physical optics method is proposed. The scheme is numerically and experimentally verified for a scattering and radome problems.
AbstractList To consider a large and complex conducting or dielectric structure, an iterative physical optics method is proposed. The scheme is numerically and experimentally verified for a scattering and radome problems.
Author Woo-Tae Kim
Il-Suek Koh
Jae-Won Rim
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  surname: Jae-Won Rim
  fullname: Jae-Won Rim
  organization: Dept. of Electron. Eng., Inha Univ., Incheon, South Korea
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  surname: Woo-Tae Kim
  fullname: Woo-Tae Kim
  organization: Anycasting Software, Seoul, South Korea
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Snippet To consider a large and complex conducting or dielectric structure, an iterative physical optics method is proposed. The scheme is numerically and...
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StartPage 1569
SubjectTerms IPO
Near-field Correction
Scattering
Title Application of IPO method to calculate scattering by conducting and dielectric objects
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