Vol. 74
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]
2018-03-26
Shorted Circular Microstrip Antennas for 50 Ω Microstrip Line Feed with Very Low Cross Polarization
By
Progress In Electromagnetics Research Letters, Vol. 74, 91-98, 2018
Abstract
A circular microstrip antenna (CMSA) cannot be fed directly with 50 Ω microstrip (MS) line, without an inset or an impedance transformer, as all around the periphery the impedance is equally high. The feeding technique such as inset fed or quarter wave transformer makes the antenna geometry asymmetrical. In this paper, a technique using single shorting post and a pair of shorting posts is proposed to match the peripheral impedance of the CMSA with that of the 50 Ω-MS-line feed for operation around 2.45 GHz. The shorting posts perturb the current distribution on the patch, altering the input impedance at the periphery. By selecting proper shorting posts positions a wide range of impedance has been adjusted without altering the patch geometry. Due to symmetric arrangement of the double shorting posts, the proposed antenna configuration has a very low cross-polarization ratio of better than -65 dB at the broadside direction for 2.45 GHz. The simulated results of the directly fed 50 Ω-MS-line CMSAs are experimentally validated with good agreement.
Citation
Shivraj Mahadusing Rathod, Raval N. Awale, and Kamla Prasan Ray, "Shorted Circular Microstrip Antennas for 50 Ω Microstrip Line Feed with Very Low Cross Polarization," Progress In Electromagnetics Research Letters, Vol. 74, 91-98, 2018.
doi:10.2528/PIERL18010935
References

1. Waterhouse, R., "Small microstrip patch antenna," Electronics Letters, Vol. 31, No. 8, 604-605, 1995.
doi:10.1049/el:19950426

2. Kumar, G. and K. P. Ray, Broadband Microstrip Antennas, Artech House, Norwood, MA, USA, 2003.

3. Wong, K. L., Compact and Broadband Microstrip Antennas, John Wiley & Sons, Inc., New York, 2002.
doi:10.1002/0471221112

4. Satpathy, S. K., K. P. Ray, and G. Kumar, "Compact shorted variations of circular microstrip antennas," Electronics Letters, Vol. 34, No. 2, 137-138, 1998.
doi:10.1049/el:19980203

5. Wong, K. L. and W. S. Chen, "Compact microstrip antenna with dual-frequency operation," Electronics Letters, Vol. 33, No. 8, 646-647, 1997.
doi:10.1049/el:19970433

6. Deshmukh, A. A. and K. P. Ray, "Broadband shorted sectoral microstrip antenna," Progress In Electromagnetics Research C, Vol. 20, 55-65, 2011.
doi:10.2528/PIERC11010202

7. Podilchak, S. K., A. P. Murdoch, and Y. M. M. Antar, "Compact, microstrip-based folded-shorted patches: PCB antennas for use on microsatellites," IEEE Antennas Propag. Mag., Vol. 59, No. 2, 88-95, April 2017.
doi:10.1109/MAP.2017.2655581

8. Rezazadeh, N. and L. Shafai, "A compact microstrip patch antenna for civilian GPS interference mitigation," IEEE Antennas Wireless Propag. Lett., Vol. 17, No. 3, 381-384, March 2018.
doi:10.1109/LAWP.2018.2790958

9. Chakravarty, T. and A. De, "Design of tunable modes and dual-band circular patch antenna using shorting post," IEE Proc. --- Microw., Antennas Propag., Vol. 146, No. 3, 224-228, 1999.
doi:10.1049/ip-map:19990629

10. Porath, R., "Theory of miniaturized shorting-post microstrip antennas," IEEE Trans. Antennas Propag., Vol. 48, No. 1, 41-47, Jan. 2000.
doi:10.1109/8.827384

11. Row, J. S., "A simple impedance-matching technique for patch antennas fed by coplanar microstrip line," IEEE Trans. Antennas Propag., Vol. 53, No. 10, 3389-3391, Oct. 2005.
doi:10.1109/TAP.2005.856375

12. Schaubert, D., F. Farrar, A. Sindoris, and S. Hayes, "Microstrip antennas with frequency agility and polarization diversity," IEEE Trans. Antennas Propag., Vol. 29, No. 1, 118-123, Jan. 1981.
doi:10.1109/TAP.1981.1142546

13. Chapari, A., A. Zeidaabadi Nezhad, and Z. H. Firouzeh, "Analytical approach for compact shorting pin circular patch antenna," IET Microwaves Antennas Propag., Vol. 11, No. 11, 1603-1608, 2017.

14. Zhang, X. and L. Zhu, "An impedance-agile microstrip patch antenna with loading of a shorting pin," 2015 Asia-Pacific Microwave Conference (APMC), 1-3, 2015.

15. Zhang, X. and L. Zhu, "Patch antennas with loading of a pair of shorting pins toward °exible impedance matching and low cross polarization," IEEE Trans. Antennas Propag., Vol. 64, No. 4, 1226-1233, April 2016.
doi:10.1109/TAP.2016.2526079

16. Rathod, S. M., R. N. Awale, and K. P. Ray, "Analysis of a single shorted rectangular microstrip antenna for 50­ microstrip line feed," 2016 International Symposium on Antennas and Propagation (APSYM), 1-4, Cochin, 2016.