Lantern Logo Shaped Novel Monopole Antenna with Semi-Circular Notch Loaded Partial Ground Plane for Ultra-Wideband Wireless Applications

被引:0
作者
Sumeet Singh Bhatia
Jagtar Singh Sivia
Amandeep Kaur Sarao
机构
[1] Punjabi University,Department of Electronics and Communication Engineering, Yadavindra College of Engineering and Technology, Guru Kashi Campus
[2] Punjabi University,Department of Computer Science Engineering, Yadavindra College of Engineering and Technology, Guru Kashi Campus
来源
Wireless Personal Communications | 2022年 / 126卷
关键词
UWB antenna; Stub; Notch; Impedance bandwidth; Monopole;
D O I
暂无
中图分类号
学科分类号
摘要
Lantern logo shaped novel design of monopole antennas for ultra – wideband applications have been presented in this manuscript. Initially, the lantern shaped radiating patch with L-shaped stubs and fractional ground plane is designed, which exhibits the maximum impedance bandwidth of 8.09 GHz in the frequency range from 2.51 to 10.60 GHz. Further, by employing the semi – circular notch in the ground plane and antenna reveals improved bandwidth of 8.11 and 5.76 GHz in dual frequency ranges 2.65–10.76 GHz and 11.24–17.00 GHz. The overall dimension of proposed antenna is 30 × 30 × 1.6 mm3 and is designed on low cost FR4 glass epoxy substrate with 1.6 mm thickness and 4.4 dielectric constant. Finally, to increase the impedance bandwidth in the entire frequency range from 1 to 17 GHz, a circular and rectangular – shaped stub is introduced in the radiating patch of final geometry of antenna and designated as proposed antenna – I and II. Impedance bandwidth (S11 < − 10 dB) attained for proposed final antenna – I is 143.93% ranging (2.74–16.81 GHz) and proposed final antenna – II is 143.08% ranging (2.82–17.00 GHz). Numerous performance parameters of both the proposed antennas are investigated, such as, peak realized gain, radiation patterns, radiation efficiency and group delay, which are all in acceptable range for distinct wireless and UWB applications. The designed antennas are fabricated and tested for the authentication of results and juxtaposition of experimental and simulated results of antennas have been made and found in good agreement with each other.
引用
收藏
页码:3211 / 3231
页数:20
相关论文
共 135 条
[21]  
Qu S-W(2017)Frequency switchable AMC loaded folded slot antenna for dual band operation IEEE Applied Electromagnetics Conference 111 4243-13
[22]  
Li J-L(2014)A compact circular slot UWB antenna with multimode reconfigurable band-notched characteristics using resonator and switch techniques Microwave and Optical Technology Letters 99 2-1838
[23]  
Chen J-X(2013)A reconfigurable wide slot antenna integrated with SIRS for UWB/multiband communication applications Microwave and Optical Technology Letters 95 1821-308
[24]  
Xue Q(2013)A CPW-fed wide-slot antenna with reconfigurable notch bands for UWB and multi-band communication applications Microwave and Optical Technology Letters 12 300-1991
[25]  
Chen Z-N(2019)Design and investigation of a multi-functional antenna with variable wideband/notched UWB behavior for WLAN/X-band?UWB and Ku-band applications AEU - International Journal of Electronics and Communications 115 1977-31
[26]  
See T-S-P(2020)Ultra-wideband quadrature LC-VCO using capacitor-bank and backgate topology with on-chip spirally stacked inductor in 0.13 µm RF-CMOS process covering S-Cbands Microelectronics Journal 14 21-153
[27]  
Qing X(2021)An inset-feed on-chip frequency reconfigurable patch antenna design with high tuning efficiency and compatible radome structure for broadband wireless applications Scientia Iranica 103 141-244
[28]  
Wu C-M(2017)Main effects ensured by symmetric circular slots etched on the radiating patch of a compact monopole antenna on the impedance bandwidth and radiation patterns Wireless Personal Communications 70 239-468
[29]  
Aissaoui D(2021)CPW-fed flexible ultra-wideband antenna for IoT applications Micromachines 98 457-144
[30]  
Abdelghani L-M(2020)Ultra-wideband antenna development to enhance gain for surface penetrating radar Wireless Personal Communications 27 e4381-undefined