Title :
The admittance of a parallel-plate waveguide aperture illuminating a metal sheet
Author :
Jones, J. Earl ; Tsai, L.L. ; Rudduck, R.C. ; Swift, C.T. ; Burnside, W.D.
Author_Institution :
NASA Langley Research Center, Hampton, VA, USA
fDate :
9/1/1968 12:00:00 AM
Abstract :
The admittance of a parallel-plate waveguide aperture having an infinite flange and illuminating a metal sheet is determined by two separate methods: 1) wedge diffraction theory; 2) an integral transform solution. Numerical computations obtained by either method are in excellent agreement and are verified experimentally. A Smith chart is employed to show that, for a given aperture width, the admittance locus coalesces about the half-space value as the metal sheet recedes to infinity. A strong interaction between the aperture and the metal sheet occurs for distances in the vicinity of integral multiples of one half-wavelength. The interaction becomes much more localized with respect to distance as the distance to the sheet is increased; however, the admittance is always infinite at these distances.
Keywords :
Antenna proximity factors; Geometrical diffraction theory; Parallel-plate waveguides; Admittance; Antenna feeds; Aperture antennas; Diffraction; Flanges; H infinity control; Plasma waves; Reflection; Reflector antennas; Waveguide theory;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.1968.1139239