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Call for Paper - May 2015 Edition
IJCA solicits original research papers for the May 2015 Edition. Last date of manuscript submission is April 20, 2015. Read More

To Enhance the Bandwidth of Small Printed Inverted T-Shaped Patch Antenna for Wireless And WBAN Applications

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IJCA Proceedings on National Conference on Advances in Technology and Applied Sciences
© 2014 by IJCA Journal
NCATAS - Number 2
Year of Publication: 2014
Authors:
Ashish Mathur
Geetika Mathur
Harsh Dutt Mathur

Ashish Mathur, Geetika Mathur and Harsh Dutt Mathur. Article: To Enhance the Bandwidth of Small Printed Inverted T-Shaped Patch Antenna for Wireless And WBAN Applications. IJCA Proceedings on National Conference on Advances in Technology and Applied Sciences NCATAS(2):9-14, September 2014. Full text available. BibTeX

@article{key:article,
	author = {Ashish Mathur and Geetika Mathur and Harsh Dutt Mathur},
	title = {Article: To Enhance the Bandwidth of Small Printed Inverted T-Shaped Patch Antenna for Wireless And WBAN Applications},
	journal = {IJCA Proceedings on National Conference on Advances in Technology and Applied Sciences},
	year = {2014},
	volume = {NCATAS},
	number = {2},
	pages = {9-14},
	month = {September},
	note = {Full text available}
}

Abstract

In this paper, the radiation performance of a monopole inverted T shape patch antenna designed on glass epoxy FR4 substrate. The proposed design is capable of providing enhanced bandwidth to cover Wi MAX, Wi Fi , WBAN and Bluetooth operations at Absolute Bandwidth (GHz) Below -10 dB is 2. 4GHz to 3. 8 GHz = 1. 4 GHz Second 5. 2 GHz to 6 GHz = 0. 8 GHz and Third 7 GHz to 8. 6 GHz =1. 6 GHz allotted by IEEE 802. 16 working group for Wi MAX applications. The performance of proposed antenna is optimized considering at different conditions to obtain an antenna with dual band and high bandwidth performance. The Simulated results for various parameters like radiation patterns, total field gain, return loss, VSWR, input impedance and radiation efficiency of proposed antennas are also calculated with high frequency structure simulator HFSS. The value of return loss, VSWR and input impedance are measured using VNA.

References

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