CPW-fed dual-element metamaterial inspired multiband antenna using simple FSS for gain enhancement

被引:0
作者
Devarapalli A.B. [1 ]
Moyra T. [1 ]
机构
[1] Department of Electronics and Communication Engineering, National Institute of Technology Agartala, Tripura
来源
Optik | 2023年 / 290卷
关键词
CPW; CSRR; Frequency Selective Surface; High Gain; Metamaterial; Multiband antenna; TE/TM polarization;
D O I
10.1016/j.ijleo.2023.171313
中图分类号
学科分类号
摘要
This article presents a dual-element metamaterial-inspired co-planar waveguide (CPW) fed elliptical antenna using a simple compact frequency selective surface (FSS) for multiband wireless applications. The designed antenna is fabricated on a cheap FR-4 substrate (εr = 4.4) with 40 × 40×1.6 mm3 dimensions. Dual complementary split ring resonators (CSRRs) loaded in the CPW ground create multiband characteristics, which are analyzed using the quasi-static design equations and the ANSYS HFSS EM simulator. FSS has been proposed as a reflector for the antenna to increase its gain. The FSS unit cell's angular stability has been analyzed using transverse electric (TE) and transverse magnetic (TM) polarization, and it has been determined to be 60°. The FSS integrated antenna offers measured bandwidths of 2.67 – 3.38 GHz (23.66 %), 3.77 – 4.17 GHz (10.25%), 4.91 – 5.93 GHz (19.61 %), and 7.28 – 8.93 GHz (20.24 %). The FSS integrated antenna shows nearly omnidirectional radiation patterns in all resonating bands with the highest gain of 9.72 dBi and measured radiation efficiency greater than 91 % in all the bands. The reported 'antenna with FSS' is appropriate for multiband wireless technologies as it covers IEEE 802.16 WiMAX, n77 5G NR, 5G Wi-Fi, WLAN, ISM and satellite spectrums. © 2023 Elsevier GmbH
引用
收藏
相关论文
共 34 条
[1]  
Sihvola A., MTMs in electromagnetics., MTMs, 1, 1, pp. 2-11, (2007)
[2]  
Daniel R.S., Pandeeswari R., Raghavan S., A compact metamaterial loaded monopole antenna with offset-fed microstrip line for wireless applications, AEU-Int. J. Electron. Commun., 83, pp. 88-94, (2018)
[3]  
Devarapalli A.B., Moyra T., Deb P.K., DNG metamaterial-based superstrate for performance enhancement of compact size wideband patch antenna, IETE Tech. Rev., pp. 1-11, (2023)
[4]  
Devarapalli A.B., Moyra T., Low cross polarized leaf shaped broadband antenna with metasurface as superstrate for sub 6 GHz 5 G applications, Optik, 282, (2023)
[5]  
Zhu J., Eleftheriades G.V., Dual-band metamaterial-inspired small monopole antenna for WiFi applications, Electron. Lett., 45, 22, pp. 1104-1106, (2009)
[6]  
Mehdipour A., Denidni T.A., Sebak A.R., Multi-band miniaturized antenna loaded by ZOR and CSRR metamaterial structures with monopolar radiation pattern, IEEE Trans. Antennas Propag., 62, 2, pp. 555-562, (2013)
[7]  
Kukreja J., Kumar Choudhary D., Kumar Chaudhary R., CPW fed miniaturized dual‐band short‐ended metamaterial antenna using modified split‐ring resonator for wireless application, Int. J. RF Microw. Comput. Eng., 27, 8, (2017)
[8]  
Jang T., Choi J., Lim S., Compact coplanar waveguide (CPW)-fed zeroth-order resonant antennas with extended bandwidth and high efficiency on via less single layer, IEEE Trans. Antennas Propag., 59, 2, pp. 363-372, (2010)
[9]  
Kapoor A., Mishra R., Kumar P., Frequency selective surfaces as spatial filters: fundamentals, analysis and applications, Alex. Eng. J., 61, 6, pp. 4263-4293, (2022)
[10]  
Mondal K., Bandwidth and gain enhancement of microstrip antenna by frequency selective surface for WLAN, WiMAX applications, Sādhanā, 44, 11, (2019)