Electromagnetic scattering from thin strips. I. Analytical solutions for wide and narrow strips

Electromagnetic scattering from thin resistive strips is formulated using an integral equation approach. Analytical expressions for the electric current density over wide and narrow strips are derived based on the physical optics and quasistatic approximation of the pertinent integral equations, res...

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Published inIEEE transactions on education Vol. 47; no. 1; pp. 100 - 106
Main Authors Barkeshli, K., Volakis, J.L.
Format Journal Article
LanguageEnglish
Published New York IEEE 01.02.2004
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Electromagnetic scattering from thin resistive strips is formulated using an integral equation approach. Analytical expressions for the electric current density over wide and narrow strips are derived based on the physical optics and quasistatic approximation of the pertinent integral equations, respectively. The solutions are used to find closed form expressions for the echo width of the strip.
AbstractList Electromagnetic scattering from thin resistive strips is formulated using an integral equation approach. Analytical expressions for the electric current density over wide and narrow strips are derived based on the physical optics and quasistatic approximation of the pertinent integral equations, respectively. The solutions are used to find closed form expressions for the echo width of the strip.
Author Barkeshli, K.
Volakis, J.L.
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Snippet Electromagnetic scattering from thin resistive strips is formulated using an integral equation approach. Analytical expressions for the electric current...
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SubjectTerms Boundary integral equations
Computer aided instruction
Current density
Electrical engineering education
Electromagnetic scattering
Fourier transforms
Title Electromagnetic scattering from thin strips. I. Analytical solutions for wide and narrow strips
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