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Vol. 1 No. 02 (2014)

April 2014

Bottle shape cut slot Microstrip patch antenna

  • Khushboo Naruka
  • Prof.(Dr.) Sudhir Kumar Sharma

International Journal of Emerging Trends in Science and Technology, Vol. 1 No. 02 (2014), 12 April 2014
Published 29 April 2014

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Abstract

This paper presents a bottle shaped cut slot microstrip patch antenna and experimentally studied on IE3D, an electromagnetic simulation package by Zeland Software Inc.. In, the presented work an rectangle patch is taken  and that rectangal patch of dimensions, is cut into the slot than the previous one is removed from it ,a shaped  is formed that  shped is named as “A bottle shaped cut slot microstrip patch antenna “,After simulation through different frequencies the best result. A bottle shaped cut slot microstrip patch antenna is designed on a FR4 substrate of thickness 1.524 mm and relative permittivity of 4.4 and mounted above the ground plane at a height of 1.6 mm.In base shape microstrip patch antenna ,Bandwidth is 4% at 4.5GHz and 4% at 4.9GHz but In bottle shape cut slot , Bandwidth as high as 6.4 %& 4.8% at 7.10GHz & 7.82% are achieved with stable pattern characteristics, such as gain and cross polarization, within its bandwidth. Impedance bandwidth, antenna gain and return loss are observed for the proposed antenna. Details of the measured and simulated results are presented and discussed.

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Naruka, K., & Sharma, P. S. K. (2014). Bottle shape cut slot Microstrip patch antenna. International Journal of Emerging Trends in Science and Technology, 1(02). Retrieved from http://www.ijetst.in/index.php/ijetst/article/view/46
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    References

    [1] James, J.R. and Hall, P.S.: ‘Handbook of Microstrip Antennas’ (Peter Peregrinus)
    [2] Constantine A. Balanis : ‘Antenna Theory, Analysis and Design’ (John Wiley & Sons)
    [3] Lu JH, Tang CL, Wong KL, ‘Novel dual-frequency and broadband designs of the slot-loaded equilateral Triangular Microstrip Antenna’ IEEE Trans. Antennas Propag. 2000;48;1048-54.
    [4] Row JS. ‘Dual-frequency triangular planar inverted-f Antenna’ IEEE Tran Antennas Propag 2005;53;874-6.
    [5] Kai-Fong Lee, Kwai- Man Luk, Jashwant S. Dahele, ‘Characteristics of the Equilateral Triangular Patch Antenna ’ IEEE Tran. Antennas Propag.1988;36;1510.
    [6] C. L. Mak, K. M. Luk, K. F. Lee, ‘ Wideband Triangular Patch Antenna’ IEEE. Proc. Microwave Antennas Propag. 1999.
    [7] Shan-Cheng Pan and Kin- Lu Wong, ‘ Dual Frequency Triangular Microstrip Antenna with Shorting Pin’ IEEE Tran. Antennas Propag.1997;45;1889
    [8] D.M. Pozar and D. H. Shaubert, ‘Microstrip Antennas : The Analysis and Design of Microstrip Antenna and Array’ IEEE Press,Inc., 1980.
    [9] I. J. Bahl and P. Bhartia, ‘Microstrip Antennas, Artech House, Dedham, MA, 1980.
    [10] IE3D User’s Manual, Release 9, Zeland Software, Inc.
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