Circularly Polarized Multi Band Patch Antenna for High Frequency Wi-Fi and Wi-MAX Application Simulated with CST Studio Suite

Abstract

A circularly polarized multi band patch antenna for high frequency application was proposed. The main purpose of this antenna is for wireless communication mainly Wi-Fi and WiMAX applications and also satisfy the bandwidth quotation of 5G application. In our work, we presented a concept of designing antenna that can work simultaneously 1.1 / 2.8 / 3.3 / 5.7 / 6 and 7.4 GHz for multiple wireless and Network applications. The special shaped patch antenna is used to attain multiple bands. It is an I shaped antenna, along with a tilted and inverted two u shaped antenna patched over it. One thick inverted U shaped antenna, tilted with 450 and another is of thin inverted u shaped antenna that tilted 900 in accordance with a previous tilted patch, that is about 450 to I shaped antenna but on opposite side of thick patch. It is connected to thick U shaped patch not with an I shaped patch. All rotation and tilting are done in horizontal axis. A 6*6 square metallic patch antenna was designed in back for simple frequency selecting purpose. Those Metallic patch surfaces behave as a simple frequency select surface (FSS). The main purpose of tis antenna is to achieve a frequency range of 5.7/6 GHz which are used for WiMAX application all over the world but the use depends upon the countries and 7.4 GHz which is proposed by USA for 5G applications.

Authors and Affiliations

Dr. D. Selvaraj, Kavianand G, Karthikeyan P, Balaji M, Gowri Ganesh K

Keywords

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  • EP ID EP23722
  • DOI http://doi.org/10.22214/ijraset.2017.4015
  • Views 465
  • Downloads 7

How To Cite

Dr. D. Selvaraj, Kavianand G, Karthikeyan P, Balaji M, Gowri Ganesh K (2017). Circularly Polarized Multi Band Patch Antenna for High Frequency Wi-Fi and Wi-MAX Application Simulated with CST Studio Suite. International Journal for Research in Applied Science and Engineering Technology (IJRASET), 5(4), -. https://europub.co.uk/articles/-A-23722