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Rectangular Ring Microstrip Patch Antenna for Ultra-wide Band Applications

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Abstract (Original Language): 
The printed antenna is one of the best antenna structures, due to its low cost and compact design. In this paper, we present a new approach to improve the radiation effectiveness and the performance of antennas by miniaturization of the size. Indeed, we have studied the performance of ultra wideband antenna which consists of a ring-shaped patch. This study was made for the whole frequency band of UWB ranging from 2.5GHz to 9.4GHz and the geometry of the antenna and the results were obtained using the simulation software CST Studio microwaves. The detailed design and the results are shown and discussed in this paper.
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REFERENCES

References: 

[1] Christophe DELAVEAUD, “Antennes compacts pour les systèmes de communication Ultra Large Bande”, Institut de
Microélectronique, Electromagnétisme et Photonique, France, 2009.
[2] C. A. Balanis, Antenna Theory: Analysis and Design, 2nd Edition, Willey, pp. 722-783, 1997.
[3] S. Lasaulce, J. Dumont, S. Hassanaly, “Signaux à bande ultra large: caractéristiques et performances,” GRETSI, Groupe
d’Etudes du Traitement du Signal et des Images, France, 2003.
[Online] Available : http://hdl.handle.net/2042/13618 (2013)
[4] Strategiestm, L’UWB ou la bande ultra large, STRATEGIES Telecoms & Multimedia, Dossiers Technologiques, 2010.
[Online] Available: http://www.strategiestm.com/DT-26-L-UWB-ou-la-bande-ultra.html (2013)
[5] N. Zainuddin, and M. R. Kamarudin, “Rectangular Ring Antenna for On-Body Communication,” PIERS Proceedings, pp.
882 – 884, July 5-8, Cambridge USA, 2010.
[6] A. Sibille, C. Roblin, S. Bories, A.C. Lepage, X. Begaud, “Conception et caractérisation d'antennes ULB pour
communications multimédia haut débit”, Revue de l'Electricité et de l'Electronique (REE), n°4, pp. 73-80, Avril 2004.
[7] Mohammed Younssi, Achraf Jaoujal, M. H. Diallo Yaccoub, Ahmed El Moussaoui, and Noura Aknin, “Study of a
Microstrip Antenna with and Without Superstrate for Terahertz Frequency,” International Journal of Innovation and
Applied Studies, vol. 2, no. 4, pp. 369–371, April 2013.
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Rectangular Ring Microstrip Patch Antenna for Ultra-wide Band Applications
ISSN : 2028-9324 Vol. 4 No. 2, Oct. 2013 446
[8] M. I. Hasan and M. A. Motin, “New slotting technique of making compact octagonal patch for four band applications,”
International Journal of Innovation and Applied Studies, vol. 3, no. 1, pp. 221–227, May 2013.
[9] Tajeswita Gupta and P. K. Singhal, “Ultra Wideband Slotted Microstrip Patch Antenna for Downlink and Uplink Satellite
Application in C band,” International Journal of Innovation and Applied Studies, vol. 3, no. 3, pp. 680–684, July 2013.
[10] Rabih Rahaoui and Mohammed Essaaidi, “Compact Cylindrical Dielectric Resonator Antenna excited by a Microstrip
Feed Line,” International Journal of Innovation and Applied Studies, vol. 2, no. 1, pp. 1–5, January 2013.
[11] Sonali Kushwah, P. K. Singhal, Manali Dongre, and Tajeswita Gupta, “A Minimized Triangular – Meander Line PIFA
Antenna for DCS1800/WIMAX Applications,” International Journal of Innovation and Applied Studies, vol. 3, no. 3, pp.
714–718, July 2013.
[12] Tajeswita Gupta, P. K. Singhal, and Vandana Vikas Thakre, “Modification in Formula of Resonating Frequency of
Equilateral TMPA for Improved Accuracy and Analysis,” International Journal of Innovation and Applied Studies, vol. 3,
no. 3, pp. 727–731, July 2013.
[13] Anshul Agarwal, P. K. Singhal, Shailendra Singh Ojha, and Akhilesh Kumar Gupta, “Design of CPW-fed Printed
Rectangular Monopole Antenna for Wideband Dual-Frequency Applications,” International Journal of Innovation and
Applied Studies, vol. 3, no. 3, pp. 758–764, July 2013.
[14] Manali Dongre, P. K. Singhal, Sonali Kushwah, and Tajeswita Gupta, “Triple Band Hexagonal Meander-line Monopole
Antenna for Wireless Applications,” International Journal of Innovation and Applied Studies, vol. 3, no. 4, pp. 953–958,
August 2013.
[15] Alak Majumder, “Design of an H-shaped Microstrip Patch Antenna for Bluetooth Applications,” International Journal of
Innovation and Applied Studies, vol. 3, no. 4, pp. 987–994, August 2013.
[16] Pawan Shakdwipee, “Design and Simulation of Edge-Coupled Stripline Band Pass Filter for U band,” International Journal
of Innovation and Applied Studies, vol. 3, no. 4, pp. 1033–1044, August 2013.
[17] B R Koushik and B Ajeya, “Design of Rectangular Microstrip Antenna with Metamaterial for Increased Bandwidth,”
International Journal of Innovation and Applied Studies, vol. 3, no. 4, pp. 1094–1100, August 2013.
[18] Rahul Yadav, “A Novel Approach for Gain and Bandwidth Re-Configurability in Helical Antenna,” International Journal of
Innovation and Applied Studies, vol. 4, no. 1, pp. 233–238, September 2013.

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