2003•IEEE International Symposium on Electromagnetic CompatibilityRequires access

Field coupling to nonuniform transmission lines with linear characteristic impedance

Diego Bellan, Sergio A. Pignari

Open publisher page 1 citations

Abstract

In this paper, plane wave field-coupling onto a nonuniform, lossless, transmission line running over a ground plane is solved analytically by means of a power series expansion in the longitudinal variable z. A linear variation of the characteristic impedance versus z is assumed. It is shown via examples that the obtained analytical results represent the limit solution of the approach based on the decomposition of the nonuniform transmission line into N/sub S/ cascaded elementary uniform line sections, for large N/sub S/. Extension of the proposed method to the case of nonuniform lines with a general characteristic impedance profile is also discussed, by resorting to a model based on the cascade of nonuniform lines with linear characteristic impedance.

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What this paper is about

In this paper, plane wave field-coupling onto a nonuniform, lossless, transmission line running over a ground plane is solved analytically by means of a power series expansion in the longitudinal variable z. A linear variation of the characteristic impedance versus z is assumed. It is shown via examples that the obtained analytical results represent the limit solution of the approach based on the decomposition of the nonuniform transmission line into N/sub S/ cascaded elementary uniform line sections, for large N/sub S/. Extension of the proposed method to the case of nonuniform lines with a general characteristic impedance profile is also discussed, by resorting to a model based on the cascade of nonuniform lines with linear characteristic impedance.

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Available abstract

In this paper, plane wave field-coupling onto a nonuniform, lossless, transmission line running over a ground plane is solved analytically by means of a power series expansion in the longitudinal variable z. A linear variation of the characteristic impedance versus z is assumed. It is shown via examples that the obtained analytical results represent the limit solution of the approach based on the decomposition of the nonuniform transmission line into N/sub S/ cascaded elementary uniform line sections, for large N/sub S/. Extension of the proposed method to the case of nonuniform lines with a general characteristic impedance profile is also discussed, by resorting to a model based on the cascade of nonuniform lines with linear characteristic impedance.

Key concepts: Electrical impedance, Electric power transmission, Transmission line, Cascade, Lossless compression, Characteristic impedance, Ground plane, Coupling (piping)

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