Near-field-far-field transformation with spherical spiral scanning

An efficient near-field-far-field transformation technique with spherical spiral scanning, which uses a minimum number of data, is proposed. A nonredundant sampling representation of the electromagnetic field on the spiral and a fast, accurate and stable interpolation algorithm are developed to this...

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Veröffentlicht in:IEEE antennas and wireless propagation letters 2003, Vol.2, p.263-266
Hauptverfasser: Bucci, O.M., D'Agostino, F., Gennarelli, C., Riccio, G., Savarese, C.
Format: Artikel
Sprache:eng
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Zusammenfassung:An efficient near-field-far-field transformation technique with spherical spiral scanning, which uses a minimum number of data, is proposed. A nonredundant sampling representation of the electromagnetic field on the spiral and a fast, accurate and stable interpolation algorithm are developed to this end. By choosing the elevation step of the spiral coincident with the sample spacing needed to interpolate the field on a meridian, it is possible to reconstruct the field at any point on the spherical surface. This allows the evaluation of the data required by a spherical near-field-far-field transformation. Numerical examples assessing the effectiveness of the proposed technique are reported.
ISSN:1536-1225
1548-5757
DOI:10.1109/LAWP.2003.820710