Analysis of a large linear antenna array of uniformly-spaced thin-wire dipoles parallel to a perfectly conducting plane

A method of moments solution is presented for the analysis of a large linear antenna array of uniformly spaced thin-wire dipoles parallel to an infinite perfectly conducting plane. A single piecewise sinusoidal expansion and testing function per dipole is used in a Galerkin procedure. This results i...

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Veröffentlicht in:I.R.E. transactions on antennas and propagation 1982-03, Vol.30 (2), p.230-234
Hauptverfasser: Luzwick, J., Ngai, E., Adams, A.
Format: Artikel
Sprache:eng
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Zusammenfassung:A method of moments solution is presented for the analysis of a large linear antenna array of uniformly spaced thin-wire dipoles parallel to an infinite perfectly conducting plane. A single piecewise sinusoidal expansion and testing function per dipole is used in a Galerkin procedure. This results in a symmetric Toeplitz generalized impedance matrix requiring approximately 2N^{2} multiplications and divisions to determine the unknown dipole currents. The solution corresponds to a savings of a factor of N/6 over a Gaussian elimination solution. Computed results are given for a 1000- element dipole array.
ISSN:0018-926X
0096-1973
1558-2221
DOI:10.1109/TAP.1982.1142785