Wireless Engineering and Technology

Volume 4, Issue 2 (April 2013)

ISSN Print: 2152-2294   ISSN Online: 2152-2308

Google-based Impact Factor: 2.09  Citations  

Broadband Quasi-Yagi Antenna for WiFi and WiMax Applications

HTML  XML Download Download as PDF (Size: 1416KB)  PP. 87-91  
DOI: 10.4236/wet.2013.42013    10,714 Downloads   16,993 Views  Citations

ABSTRACT

In this paper, we present a broadband quasi-Yagi antenna. Good impedance matching is obtained by using parasitic elements. The antenna has been designed and successfully measured. Experimental results show that the 10 dB return loss bandwidth of this antenna is 50% operating from 2.3 GHz to 3.8 GHz. We obtain very flat gain (around 5 dB) over the entire bandwidth. For the design and optimization of antennas, we use HFSS CAD software from ANSOFT.

Share and Cite:

J. Floc’h and A. Ahmad, "Broadband Quasi-Yagi Antenna for WiFi and WiMax Applications," Wireless Engineering and Technology, Vol. 4 No. 2, 2013, pp. 87-91. doi: 10.4236/wet.2013.42013.

Cited by

[1] A Planar Suspended Multiband Yagi Antenna for WLAN, LTE, and 5G Wireless Applications
Progress in Electromagnetics …, 2022
[2] A Wideband Compact Quasi-Yagi Antenna with U-shaped Slots on The Ground Plane
2021 XXXIVth General …, 2021
[3] One Kind of Ultra-wideband and High-gain Conformal Yagi Antenna for Airfoil
2021 International Conference on …, 2021
[4] Planar Yagi-Uda Antenna with Mirrored Ground Plane for WLAN
2020
[5] 低姿勢スーパーディレクティブアンテナに関する研究
2020
[6] Quasi-optics-inspired low-profile endfire antenna element
2019
[7] Analysis of Vivaldi rectangular bow-tie and Quasi-Yagi antenna performance for S-band FMCW-SAR on UAV platform
2018
[8] Modified series-fed dipole pair antenna using split-ring resonator directors for dual-band operation
Journal of Taibah University for Science, 2018
[9] Analysis of Vivaldi, Rectangular, Bow-tie, and Quasi-Yagi Antenna Performance for S-Band FMCW-SAR on UAV Platform
2017
[10] Mimetized printed Yagi-Uda antenna array for TDT reception
2017
[11] On miniaturization of efficient ultrawideband printed quazi-Yagi antenna array for indoor applications
Radioelectronics and Communications Systems, 2017
[12] Millimeter Wave Multi-Beam-Switching Antenna
2017
[13] Miniaturized broadband printed unidirectional antenna with parasitic slots for indoor wireless applications
2017
[14] О миниатюризации эффективной сверхширокополосной печатной антенной решетки квази-Яги
2017
[15] Reduced mass printed Quasi-Yagi antennas
2016
[16] Design of miniaturized ultra-wideband Quasi-Yagi antenna
2016
[17] A novel design of broadband Quasi-Yagi antenna loaded with split-ring resonators
2016
[18] Evaluation of display methods for teleoperation of road vehicles
Journal of Unmanned System Technology, 2016
[19] Evaluating the Use of Manned and Unmanned Aircraft Systems in Strategic Offensive Tasks
2015
[20] Compact and efficient ultra-wideband printed quazi-yagi array antenna for indoor applications
Antennas & Propagation Conference (LAPC), 2015 Loughborough, 2015
[21] Design of multiband and wideband antennas with printed dipole
Microwave Symposium (MMS), 2015 IEEE 15th Mediterranean, 2015
[22] Design of Multiband and Wideband Antenna with Printed Dipole
2015
[23] A modified dipole Quasi-Yagi antenna to increase directivity and gain for WLAN application
Power and Energy (PECon), 2014 IEEE International Conference, 2014
[24] Broadband design array of printed dipole
Microwave Symposium (MMS), 2014 14th Mediterranean, 2014
[25] Multi-body dynamics modeling of fixed-pitch coaxial rotor helicopter
2013
[26] Ultra-wideband quasi-Yagi circular dipole antenna for wireless applications
Antennas and Propagation Conference (LAPC), 2013 Loughborough. IEEE, 2013
[27] Quasi Yagi Antennas for State of the Art Applications

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.