Vol. 101
Latest Volume
All Volumes
PIERL 119 [2024] PIERL 118 [2024] PIERL 117 [2024] PIERL 116 [2024] PIERL 115 [2024] PIERL 114 [2023] PIERL 113 [2023] PIERL 112 [2023] PIERL 111 [2023] PIERL 110 [2023] PIERL 109 [2023] PIERL 108 [2023] PIERL 107 [2022] PIERL 106 [2022] PIERL 105 [2022] PIERL 104 [2022] PIERL 103 [2022] PIERL 102 [2022] PIERL 101 [2021] PIERL 100 [2021] PIERL 99 [2021] PIERL 98 [2021] PIERL 97 [2021] PIERL 96 [2021] PIERL 95 [2021] PIERL 94 [2020] PIERL 93 [2020] PIERL 92 [2020] PIERL 91 [2020] PIERL 90 [2020] PIERL 89 [2020] PIERL 88 [2020] PIERL 87 [2019] PIERL 86 [2019] PIERL 85 [2019] PIERL 84 [2019] PIERL 83 [2019] PIERL 82 [2019] PIERL 81 [2019] PIERL 80 [2018] PIERL 79 [2018] PIERL 78 [2018] PIERL 77 [2018] PIERL 76 [2018] PIERL 75 [2018] PIERL 74 [2018] PIERL 73 [2018] PIERL 72 [2018] PIERL 71 [2017] PIERL 70 [2017] PIERL 69 [2017] PIERL 68 [2017] PIERL 67 [2017] PIERL 66 [2017] PIERL 65 [2017] PIERL 64 [2016] PIERL 63 [2016] PIERL 62 [2016] PIERL 61 [2016] PIERL 60 [2016] PIERL 59 [2016] PIERL 58 [2016] PIERL 57 [2015] PIERL 56 [2015] PIERL 55 [2015] PIERL 54 [2015] PIERL 53 [2015] PIERL 52 [2015] PIERL 51 [2015] PIERL 50 [2014] PIERL 49 [2014] PIERL 48 [2014] PIERL 47 [2014] PIERL 46 [2014] PIERL 45 [2014] PIERL 44 [2014] PIERL 43 [2013] PIERL 42 [2013] PIERL 41 [2013] PIERL 40 [2013] PIERL 39 [2013] PIERL 38 [2013] PIERL 37 [2013] PIERL 36 [2013] PIERL 35 [2012] PIERL 34 [2012] PIERL 33 [2012] PIERL 32 [2012] PIERL 31 [2012] PIERL 30 [2012] PIERL 29 [2012] PIERL 28 [2012] PIERL 27 [2011] PIERL 26 [2011] PIERL 25 [2011] PIERL 24 [2011] PIERL 23 [2011] PIERL 22 [2011] PIERL 21 [2011] PIERL 20 [2011] PIERL 19 [2010] PIERL 18 [2010] PIERL 17 [2010] PIERL 16 [2010] PIERL 15 [2010] PIERL 14 [2010] PIERL 13 [2010] PIERL 12 [2009] PIERL 11 [2009] PIERL 10 [2009] PIERL 9 [2009] PIERL 8 [2009] PIERL 7 [2009] PIERL 6 [2009] PIERL 5 [2008] PIERL 4 [2008] PIERL 3 [2008] PIERL 2 [2008] PIERL 1 [2008]
2021-12-26
A 5.4 GHz Dual-Polarized Printed AMOS Antenna
By
Progress In Electromagnetics Research Letters, Vol. 101, 165-171, 2021
Abstract
A novel dual-polarized printed AMOS antenna with high isolation operating at 5.4 GHz is proposed. The horizontal and vertical polarizations have similar radiation patterns in horizontal plane with the HPBW over 90°. In the frequency range of 5.2 GHz-5.6 GHz, the vertical polarization antenna and horizontal antenna have the gain above 7.4 dB and 10 dB, respectively. The S21 between the two input ports of the dual-polarized AMOS antenna is lower than -40 dB.
Citation
Wen Luo, and Yanfei Li, "A 5.4 GHz Dual-Polarized Printed AMOS Antenna," Progress In Electromagnetics Research Letters, Vol. 101, 165-171, 2021.
doi:10.2528/PIERL21052301
References

1. Wang, L., H.-C. Yang, and Y. Li, "Design of a new printed dipole antenna using in high latitudes for Inmarsat," IEEE Antennas and Wireless Propagation Letters, Vol. 10, 358-360, 2011.
doi:10.1109/LAWP.2011.2146224

2. Jie, S. and L. Kwaiman, "Wideband linearly-polarized and circularly-polarized aperture-coupled magneto-electric dipole antennas fed by microstrip line with electromagnetic bandgap surface," IEEE Access, Vol. 7, 43084-43091, 2019.
doi:10.1109/ACCESS.2019.2907723

3. Gou, Y., S. Yang, J. Li, and Z. Nie, "A compact dual-polarized printed dipole antenna with high isolation for wideband base station applications," IEEE Transactions on Antennas and Propagation, Vol. 62, No. 8, 4392-4395, August 2014.
doi:10.1109/TAP.2014.2327653

4. Zhou, Z., S. Yang, and Z. Nie, "A novel broadband printed dipole antenna with low cross- polarization," IEEE Transactions on Antennas and Propagation, Vol. 55, No. 11, 3091-3093, November 2019.
doi:10.1109/TAP.2007.908570

5. Wang, Y. and L. Y. Zhou, "Design of a dual-polarization log-periodic antenna (LPDA) in PCB," 2019 Photonics & Electromagnetics Research Symposium, 2393-2397, 2019.
doi:10.1109/PIERS-Fall48861.2019.9021898

6. Jasik, H., Antenna Engineering Handbook, Fourth Edition, Chapter 4, McGraw-Hill, 2007.

7. Nishimura, S., K. Nakano, and T. Makimoto, "Franklin type microstrip line antenna," 1979 Antennas and Propagation Society International Symposium, Vol. 17, 134-137, 1979.
doi:10.1109/APS.1979.1148179

8. Chang, S. H., W. J. Liao, K. W. Peng, and C. Y. Hsieh, "A Franklin array antenna for wireless charging applications," PIERS Online, Vol. 6, No. 4, 340-344, 2010.
doi:10.2529/PIERS090904050641

9. Nakano, H., N. Odachi, H. Mimaki, and J. Yamauchi, "An array of Franklin and Bruce antennas,", Vol. 2, 1130-1133, 1996.

10. Lin, W. and R. W. Ziolkowski, "Compact high directivity, omnidirectional circularly polarized antenna array," IEEE Transactions on Antennas and Propagation, Vol. 67, No. 7, 4537-4547, July 2019.
doi:10.1109/TAP.2019.2905721

11. Rohani, B. B. and A. Hiroyuki, "A low profile directional antenna with dual polarization for channel capacity enhancement," 2015 IEEE International RF and Microwave Conference (RFM), 79-82, 2015.

12. Solbach, K., "Microstrip-Franklin antenna," IEEE Transactions on Antennas and Propagation, Vol. 30, No. 4, 773-775, July 1982.
doi:10.1109/TAP.1982.1142845

13. Hamouz, P., P. Hazdra, M. Polivka, M. Capek, and M. Mazanek, "Radiation efficiency and Q factor study of Franklin antenna using the theory of characteristic modes," Proceedings of the 5th European Conference on Antennas and Propagation (EUCAP), 1974-1977, 2011.