This paper provides the experimental validation of an efficient iterative procedure to correct known position errors in a spherical near to far-field (NTFF) transformation for elongated antennas which uses a minimum number of NF measurements. This transformation exploits a non-redundant sampling representation of the voltage detected by the probe obtained by shaping a long antenna with a prolate ellipsoid. The uniform samples, those at the points set by the representation, are accurately reconstructed from the acquired not regularly distributed (non-uniform) ones by using an iterative scheme, which requires a one to one relationship between each uniform sampling point and the corresponding non-uniform one. Then a 2-D optimal sampling formula is adopted to evaluate the input data needed to perform the traditional spherical NTFF transformation from the retrieved non-redundant uniform samples. Finally, laboratory proofs have been reported to demonstrate the validity of the presented technique from a practical viewpoint.

This paper provides the experimental validation of an efficient iterative procedure to correct known position errors in a spherical near to far-field (NTFF) transformation for elongated antennas which uses a minimum number of NF measurements. This transformation exploits a non-redundant sampling representation of the voltage detected by the probe obtained by shaping a long antenna with a prolate ellipsoid. The uniform samples, those at the points set by the representation, are accurately reconstructed from the acquired not regularly distributed (non-uniform) ones by using an iterative scheme, which requires a one to one relationship between each uniform sampling point and the corresponding non-uniform one. Then a 2-D optimal sampling formula is adopted to evaluate the input data needed to perform the traditional spherical NTFF transformation from the retrieved non-redundant uniform samples. Finally, laboratory proofs have been reported to demonstrate the validity of the presented technique from a practical viewpoint.

Correction of known position errors in a spherical near to far-field transformation for long antennas / Cicchetti, Renato; D’agostino, Francesco; Ferrara, Flaminio; Gennarelli, Claudio; Guerriero, Rocco; Migliozzi, Massimo. - In: THE OPEN ELECTRICAL & ELECTRONIC ENGINEERING JOURNAL. - ISSN 1874-1290. - ELETTRONICO. - 11:1(2017), pp. 141-153. [10.2174/1874129001711010141]

Correction of known position errors in a spherical near to far-field transformation for long antennas

CICCHETTI, Renato;
2017

Abstract

This paper provides the experimental validation of an efficient iterative procedure to correct known position errors in a spherical near to far-field (NTFF) transformation for elongated antennas which uses a minimum number of NF measurements. This transformation exploits a non-redundant sampling representation of the voltage detected by the probe obtained by shaping a long antenna with a prolate ellipsoid. The uniform samples, those at the points set by the representation, are accurately reconstructed from the acquired not regularly distributed (non-uniform) ones by using an iterative scheme, which requires a one to one relationship between each uniform sampling point and the corresponding non-uniform one. Then a 2-D optimal sampling formula is adopted to evaluate the input data needed to perform the traditional spherical NTFF transformation from the retrieved non-redundant uniform samples. Finally, laboratory proofs have been reported to demonstrate the validity of the presented technique from a practical viewpoint.
2017
This paper provides the experimental validation of an efficient iterative procedure to correct known position errors in a spherical near to far-field (NTFF) transformation for elongated antennas which uses a minimum number of NF measurements. This transformation exploits a non-redundant sampling representation of the voltage detected by the probe obtained by shaping a long antenna with a prolate ellipsoid. The uniform samples, those at the points set by the representation, are accurately reconstructed from the acquired not regularly distributed (non-uniform) ones by using an iterative scheme, which requires a one to one relationship between each uniform sampling point and the corresponding non-uniform one. Then a 2-D optimal sampling formula is adopted to evaluate the input data needed to perform the traditional spherical NTFF transformation from the retrieved non-redundant uniform samples. Finally, laboratory proofs have been reported to demonstrate the validity of the presented technique from a practical viewpoint.
2D Optimal sampling; elongated antennas; near to far-field transformations; non-redundant representations of electromagnetic fields; probe positioning errors correction; spherical scan; electrical and electronic engineering
01 Pubblicazione su rivista::01a Articolo in rivista
Correction of known position errors in a spherical near to far-field transformation for long antennas / Cicchetti, Renato; D’agostino, Francesco; Ferrara, Flaminio; Gennarelli, Claudio; Guerriero, Rocco; Migliozzi, Massimo. - In: THE OPEN ELECTRICAL & ELECTRONIC ENGINEERING JOURNAL. - ISSN 1874-1290. - ELETTRONICO. - 11:1(2017), pp. 141-153. [10.2174/1874129001711010141]
File allegati a questo prodotto
File Dimensione Formato  
Cicchetti_Correction-of-known_2017.pdf

accesso aperto

Note: File contenente il lavoro in formato elettronico
Tipologia: Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza: Creative commons
Dimensione 7.89 MB
Formato Adobe PDF
7.89 MB Adobe PDF

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1012515
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 1
  • ???jsp.display-item.citation.isi??? ND
social impact