On the application of parametric models to the transient analysis of resonant and multiband antennas
The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by planar triangular patches and the study is carried out by solving the time-domain electric-field integral equation (TD-EFIE). Linear parametr...
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Published in: | IEEE transactions on antennas and propagation Vol. 46; no. 3; pp. 312 - 317 |
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01-03-1998
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Abstract | The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by planar triangular patches and the study is carried out by solving the time-domain electric-field integral equation (TD-EFIE). Linear parametric modeling techniques are applied to considerably reduce the computation time. Numerical results are compared with experimental measurements. |
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AbstractList | The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by planar triangular patches and the study is carried out by solving the time-domain electric-field integral equation (TD-EFIE). Linear parametric modeling techniques are applied to considerably reduce the computation time. Numerical results are compared with experimental measurements The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by planar triangular patches, and the study is carried out by solving the time-domain electric-field integral equation (TD-EFIE). Linear parametric modeling techniques are applied to considerably reduce computation time. Numerical results are compared with experimental measurements. (Author) The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by planar triangular patches and the study is carried out by solving the time-domain electric-field integral equation (TD-EFIE). Linear parametric modeling techniques are applied to considerably reduce the computation time. Numerical results are compared with experimental measurements. |
Author | Gomez Martin, R. Fornieles Callejn, J. Bretones, A.R. |
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Cites_doi | 10.1109/8.8607 10.1007/3540075534_8 10.1049/el:19960033 10.1007/3540075534_7 10.1109/8.18710 10.1109/8.496259 10.1080/02726349008908256 10.1109/PROC.1980.11881 10.1163/156939387X00054 10.1049/ip-map:19960116 10.1049/el:19961476 10.1109/74.153529 10.1109/PROC.1986.13617 10.1109/8.250460 10.1109/TAP.1982.1142818 10.1029/96RS02126 10.1163/156939394X00452 10.1108/eb010050 |
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References | ref12 ref15 ref14 booker (ref21) 1994; 8 ref17 cohen (ref27) 1996 ref16 ref19 miller (ref9) 1979 fornieles callejo´n (ref11) 1994 marple (ref18) 1987 ref24 ref23 ref26 taflove (ref3) 1995 ref25 ref20 ref22 baum (ref8) 1976 mittra (ref2) 1976 go´mez martı´n (ref10) 1995 hoefer (ref4) 1989 ref7 tijhuis (ref13) 1987 ref6 ref5 miller (ref1) 1986 |
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Snippet | The transient responses of a resonant antenna and a fractal multiband antenna, both formed by conducting surfaces, are calculated. The surfaces are modeled by... |
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SubjectTerms | Associate members Electromagnetic transients Fractals Frequency domain analysis Integral equations Parametric statistics Resonance Time domain analysis Transient analysis Transient response |
Title | On the application of parametric models to the transient analysis of resonant and multiband antennas |
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