Designing and Simulation of Dual Band Antenna using CPW Feeding

Authors

  • Laxmi Narwaria Research Scholar, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India
  • P. K. Singhal Professor, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India

Abstract

ABSTRACT
A dual-band antenna is proposed in this paper based on a coplanar waveguide feeding technique. This proposed antenna has 70 MHz and 426 MHz maximum bandwidth and they radiate at 1.5 and 2.56 GHz. Maximum return loss and average gain is -40 dBi and 3.0 dBi. A proposed monopole antenna is a combination of slotted rectangular and triangular-shaped structures. A 90-degree inclined T shaped stub was used to provide upper band. The substrate used was FR4 with a height of 1.6 mm, the antenna was designed and simulated in CST 2018.

Keywords: DGS, bandwidth, monopole, return loss, dual band antenna

Cite this Article: Laxmi Narwaria, P.K. Singhal. Designing and Simulation of Dual Band Antenna using CPW Feeding. International Journal of Microwave Engineering and Technology. 2020; 6(1): 7–13p.

Author Biographies

  • Laxmi Narwaria, Research Scholar, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India

    Research Scholar, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India

  • P. K. Singhal, Professor, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India

    Professor, Department of Electronics and Communication Engineering, Madhav Institute of Technology and Science, Madhya Pradesh, India

References

. Constantine A.Balanis, Antenna Theory and Design. John Wiley & Sons, Inc., 1997.

. David M. Pozar, “Microwave Engineering”, 3rd Edition, John Wiley & Sons, 2004.

. S. S. Nagre and A. S. Shirsat, "Design of compact CPW-Fed printed monopole UWB antenna for band notched applications," 2016 International Conference on Automatic Control and Dynamic Optimization Techniques (ICACDOT), Pune, 2016, pp. 394-397.

A. Djaiz, M. Nedil, M. A. Habib, L. Talbi and T. A. Denidni, "A new CPW-feed miniaturized dual-band monopole antenna using spiral matching resonators," 2008 IEEE Antennas and Propagation Society International Symposium, San Diego, CA, 2008, pp. 1-4.

W. Liu, C. Wu and N. Chu, "A Compact CPW-Fed Slotted Patch Antenna for Dual-Band Operation," in IEEE Antennas and Wireless Propagation Letters, vol. 9, pp. 110-113, 2010.

Horng-Dean Chen, "Compact CPW-fed dual-frequency monopole antenna," in Electronics Letters, vol. 38, no. 25, pp. 1622-1624, 5 Dec. 2002.

C. Saha, L. A. Shaik, R. Muntha, Y. M. M. Antar and J. Y. Siddiqui, "A Dual Reconfigurable Printed Antenna: Design Concept and Experimental Realization," in IEEE Antennas and Propagation Magazine, vol. 60, no. 3, pp. 66-74, June 2018.

Z. Medina, A. Reyna, M. A. Panduro and O. Elizarraras, “Dual- Band Performance Evaluation of Time- Modulated Circular Geometry Array with Microstrip Fed-Slot Antennas,” IEEE Access, vol. 7, pp. 28625-28634, Feb. 2019.

C. S. Prasad, A. Biswas and M. J. Akhtar, “Broadband eight –dielectric rod antenna array using the simple microstrip slot feeding” IET Microwave Antennas & Propagation, vol. 13, NO.4, pp 472-477, March 2019.

Rohit Kumar Saini, Santanu Dwari,, “CPW-Fed Dual-Band Dual-Sense Circularly Polarized Monopole Antenna,” IEEE Antennas and Wireless Propagation Letters, VOL. 16, pp. 2497–2500, 2017.

Published

2020-01-29

Issue

Section

Review Article