1993IEEE Transactions on Antennas and PropagationRequires access

Pyramidal horn gain calculation with improved accuracy

M.J. Maybell, P.S. Simon

Open publisher page 42 citations

Abstract

Previously published methods for pyramidal horn gain calculation have used an approximate expression for the path length error that gives rise to aperture quadratic phase error. In this study pyramidal horn gain is calculated without approximating the path length error. These improved accuracy gain calculations give results equal to the previous approximate calculations for large apertures (A or B>50 lambda ) or small peak aperture phase error in wavelengths (S or T0.6) the improved accuracy method can yield lower gain than the previous calculations, especially for an E-plane flare.>

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What this paper is about

Previously published methods for pyramidal horn gain calculation have used an approximate expression for the path length error that gives rise to aperture quadratic phase error. In this study pyramidal horn gain is calculated without approximating the path length error. These improved accuracy gain calculations give results equal to the previous approximate calculations for large apertures (A or B>50 lambda ) or small peak aperture phase error in wavelengths (S or T0.6) the improved accuracy method can yield lower gain than the previous calculations, especially for an E-plane flare.>

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Available abstract

Previously published methods for pyramidal horn gain calculation have used an approximate expression for the path length error that gives rise to aperture quadratic phase error. In this study pyramidal horn gain is calculated without approximating the path length error. These improved accuracy gain calculations give results equal to the previous approximate calculations for large apertures (A or B>50 lambda ) or small peak aperture phase error in wavelengths (S or T0.6) the improved accuracy method can yield lower gain than the previous calculations, especially for an E-plane flare.>

Key concepts: Lambda, Aperture (computer memory), Physics, Wavelength, French horn, Path length, Optics, Phase (matter)

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