CIRCULARLY POLARIZED SPIDRON FRACTAL SLOT ANTENNA ARRAYS FOR BROADBAND SATELLITE COMMUNICATIONS IN KU-BAND

In this paper, a novel circularly polarized Spidron fractal slot antenna array developed for broadband satellite communication in the Ku-band is discussed. A Spidron fractal slot configuration was utilized as a single radiating element to achieve circularly polarized radiation. The effects of alteri...

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Veröffentlicht in:Electromagnetic waves (Cambridge, Mass.) Mass.), 2013-05, Vol.137, p.203-218
Hauptverfasser: Trinh-Van, Son, Kim, Han Byul, Kwon, Gina, Hwang, Keum Cheol
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Sprache:eng
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Zusammenfassung:In this paper, a novel circularly polarized Spidron fractal slot antenna array developed for broadband satellite communication in the Ku-band is discussed. A Spidron fractal slot configuration was utilized as a single radiating element to achieve circularly polarized radiation. The effects of altering the feeding position on the resonance behavior and the radiative characteristics were assessed. As a consequence, the design was expanded from a single element to a 2x2 subarray and further to a 4x4 array in order to enhance the bandwidth performance of the antenna when integrated with a sequential feeding network. Two prototype arrays were fabricated and tested, and measurements revealed that the 2x2 subarray has a 10-dB reflection coefficient bandwidth between 10 and 14.28 GHz, 3 dB axial ratio bands between 10.15 and 11.15 GHz and between 11.75 and 13.92 GHz, and a maximum gain of 11.4dB at 13GHz. The results for the 4x4 array indicated that both the 10-dB reflection coefficient and 3dB axial ratio bandwidths cover the entire operating frequency from 10 to 15 GHz in the Ku-band. The maximum gain for the 4x4 array was 15.63dB at 12.6 GHz.
ISSN:1559-8985
1070-4698
1559-8985
DOI:10.2528/PIER13010401