2007Unpublished venueRequires access

Entire-Domain Method of Moments Analysis of Shielded Microstrip Transmission Line

A. B. Gnilenko

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Abstract

A full-wave analysis of a shielded microstrip line is presented based on the method of moments for entire-domain basis. A rigorous integral equation formulation incorporates a multilayered electric type Green's dyadic to deal with a multidielectric loading. Numerical results for microstrip line and suspended substrate microstrip line are obtained and compared with other available data.

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A full-wave analysis of a shielded microstrip line is presented based on the method of moments for entire-domain basis. A rigorous integral equation formulation incorporates a multilayered electric type Green's dyadic to deal with a multidielectric loading. Numerical results for microstrip line and suspended substrate microstrip line are obtained and compared with other available data.

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Available abstract

A full-wave analysis of a shielded microstrip line is presented based on the method of moments for entire-domain basis. A rigorous integral equation formulation incorporates a multilayered electric type Green's dyadic to deal with a multidielectric loading. Numerical results for microstrip line and suspended substrate microstrip line are obtained and compared with other available data.

Key concepts: Microstrip, Shielded cable, Method of moments (probability theory), Transmission line, Integral equation, Line (geometry), Acoustics, Electronic engineering

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