2002Unpublished venueRequires access

Analysis of E-plane structures by the coupled-integral-equations technique

S. Amari, Jens Børnemann, R. Vahldieck

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Abstract

The coupled integral equations technique is successfully applied to accurately analyse E-plane structures in one step. A considerable reduction in the numerical effort is achieved along with an increase in accuracy by including the edge conditions at all the discontinuities. Excellent agreement with measured data is demonstrated with only two or three basis functions per discontinuity.

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What this paper is about

The coupled integral equations technique is successfully applied to accurately analyse E-plane structures in one step. A considerable reduction in the numerical effort is achieved along with an increase in accuracy by including the edge conditions at all the discontinuities. Excellent agreement with measured data is demonstrated with only two or three basis functions per discontinuity.

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Available abstract

The coupled integral equations technique is successfully applied to accurately analyse E-plane structures in one step. A considerable reduction in the numerical effort is achieved along with an increase in accuracy by including the edge conditions at all the discontinuities. Excellent agreement with measured data is demonstrated with only two or three basis functions per discontinuity.

Key concepts: Classification of discontinuities, Discontinuity (linguistics), Integral equation, Plane (geometry), Enhanced Data Rates for GSM Evolution, Reduction (mathematics), Mathematical analysis, Basis (linear algebra)

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