3-Faceted Array With Low Side Lobe Levels Using Tunable Windows
In this paper, a 3-faceted phased array antenna synthesised for low side lobe levels using a tuneable window is presented. The array consists of eight left hand circularly polarised antennas. The phase difference of the antennas on the faceted structure is first compensated for and then an amplitu...
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my.ump.umpir.42662018-04-18T02:59:19Z http://umpir.ump.edu.my/id/eprint/4266/ 3-Faceted Array With Low Side Lobe Levels Using Tunable Windows Nurul Hazlina, Noordin Arslan, Tughrul Flynn, Brian TK Electrical engineering. Electronics Nuclear engineering In this paper, a 3-faceted phased array antenna synthesised for low side lobe levels using a tuneable window is presented. The array consists of eight left hand circularly polarised antennas. The phase difference of the antennas on the faceted structure is first compensated for and then an amplitude tapering method is used to synthesise the array to have a low sidelobe level, (SLL). The effect of the phase compensation on the angular scanning range of the 3-faceted array is then investigated. Simulation results show that the radiation patterns generated with tuneable windows, such as Kaiser, Chebyshev and Taylor, have a similar profile to the uniform amplitude distribution but with a much lower SLL and broader main beam. This technique enables the faceted structure to be synthesised for low SLL and at the same time retain its radiation pattern profile. 2013-04 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/4266/1/fkee-2013-hazlina-3-faceted_array_with_abs_only.pdf Nurul Hazlina, Noordin and Arslan, Tughrul and Flynn, Brian (2013) 3-Faceted Array With Low Side Lobe Levels Using Tunable Windows. In: 7th European Conference on Antennas and Propagation (EuCAP 2013), 8-12 April 2013 , Gothenburg, Sweeden. pp. 600-604.. http://ieeexplore.ieee.org/xpl/articleDetails.jsp?tp=&arnumber=6546340&queryText%3D3-Faceted+Array+With+Low+Side+Lobe+Levels+Using+Tunable+Windows |
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TK Electrical engineering. Electronics Nuclear engineering Nurul Hazlina, Noordin Arslan, Tughrul Flynn, Brian 3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
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In this paper, a 3-faceted phased array antenna
synthesised for low side lobe levels using a tuneable window is presented. The array consists of eight left hand circularly polarised antennas. The phase difference of the antennas on the faceted structure is first compensated for and then an amplitude tapering method is used to synthesise the array to have a low sidelobe level, (SLL). The effect of the phase compensation on the angular scanning range of the 3-faceted array is then investigated. Simulation results show that the radiation patterns generated with tuneable windows, such as Kaiser, Chebyshev and Taylor, have a similar profile to the uniform amplitude distribution but with a much lower SLL and broader main beam. This technique enables the faceted structure to be synthesised for low SLL and at the same time retain its radiation pattern profile. |
format |
Conference or Workshop Item |
author |
Nurul Hazlina, Noordin Arslan, Tughrul Flynn, Brian |
author_facet |
Nurul Hazlina, Noordin Arslan, Tughrul Flynn, Brian |
author_sort |
Nurul Hazlina, Noordin |
title |
3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
title_short |
3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
title_full |
3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
title_fullStr |
3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
title_full_unstemmed |
3-Faceted Array With Low Side Lobe Levels Using Tunable Windows |
title_sort |
3-faceted array with low side lobe levels using tunable windows |
publishDate |
2013 |
url |
http://umpir.ump.edu.my/id/eprint/4266/1/fkee-2013-hazlina-3-faceted_array_with_abs_only.pdf http://umpir.ump.edu.my/id/eprint/4266/ http://ieeexplore.ieee.org/xpl/articleDetails.jsp?tp=&arnumber=6546340&queryText%3D3-Faceted+Array+With+Low+Side+Lobe+Levels+Using+Tunable+Windows |
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13.211869 |