Research ArticleOpen AccessGoogle Scholar indexed
On the Design of Planar Printed Dipole Array Antennas
Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
Thales Communication, Colombes, France
Thales Communication, Colombes, France
- 1 Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
- 2 Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
- 3 Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
- 4 Institut d’Electronique et de Télécommunications de Rennes (IETR); Unité Mixte de Recherche 6164 (UMR), Rennes, France
- 5 Thales Communication, Colombes, France
- 6 Thales Communication, Colombes, France
Wireless Engineering and Technology·Volume 03 (2012)·Pages 203–209·Published 31 October 2012·DOI10.4236/wet.2012.34029
Copy link · social · email
Abstract
In this paper, we propose a new design procedure for printed dipole array antennas. Applications of these arrays are devoted to wireless communication systems, mainly base stations and beam steerable antennas. All the designs have been developed at the frequency of 3 GHz. This structure is chosen in order to enhance the gain and minimize the backside radiations of an antenna array with a very simple feeding.
KeywordsPrinted Antenna ArrayQuasi Yagi AntennasGain and Backside Radiation EnhancementSimple Microstripfeeding
- J. M. Floc’h, J. M. Denoual, and K. Sallem, “Design of Printed Dipole with Reflector and Multi Directors,” Loughborough Antennas and Propagation Conference, Loughborough, 16-17 November 2009, pp. 421-424.
- L. C. Kretly and C. E. Capovilla, “Patches Driver on the Quasi-Yagi Antenna: Analyses of Bandwidth and Radiation Pattern,” Proceedings of the International Microwave and Optoelectronics Conference, Vol. 1, 2009, pp. 313-316.
- Q. Yongxi and T. Itoh, “Active Integrated Antennas Using Planar Quasi-Yagi Radiators,” Proceedings of the International Microwave and Millimeter Wave Technology Conference, Beijing, 14-16 September 2000, pp. P1-P4.
- N. Kaneda, W. R. Deal, Q. Yongxi, R. Waterhouse and T. Itoh, “A Broadband Planar Quasi-Yagi Antenna,” IEEE Transactions on Antenna and Propagation, Vol. 50, No. 8,2002, pp. 1158-1160.
- J. Huang and A. C. Densmore, “Microstrip Yagi Array Antenna for Mobile Satellite Vehicle Applications,” IEEE Transactions on Antennas and Propagation, Vol. 39, No. 7, 1991, pp. 1024-1030.
- J. M. Floc’h and H. Rmili, “Design of Multiband Printed Dipole Antennas Using Parasitic elemnts,” Microwave and Optical Technology Letters, Vol. 48, No. 8, 2006, pp. 1639-1645. doi:10.1002/mop.21714
- E. Avila-Navarro, J. A. Carrasco and C. Reig, “Design of Yagi-Like Printed Antennas for WLAN Applications,” Microwave and Optical Technology Letters, Vol. 49, No. 9, 2007, pp. 2174-2178. doi:10.1002/mop.22655