An Ultra-Wide Band Patch Antenna for Commercial Communication Applications

2021 ◽  
pp. 235-242
Author(s):  
L. Diana Evangeline ◽  
G. Shine Let ◽  
C. Benin Pratap
2020 ◽  
Vol 8 (5) ◽  
pp. 4517-4520

In this research paper a design of Microstip patch antenna for the ultra-wide band (UWB) applications is presented. Ultra wide band antennas has very wide band of operation which accommodates many communication frequencies as set by the federal commission of communication. The UWB antennas is based on the micro strip patch antenna concept and the design of the antenna is based on the stack antenna or multi-layer antenna. Stacking is used in designing for increasing the bandwidth of the antenna so stacking concept is good for the designing of the UWB antenna. The feeding used to feed the antenna is micro strip line feed. Micro strip line feeding technique is one of very popular feeding technique to feed the antenna because its fabrication is very simple. The proposed design is simulated in the CADFEKO software which is very useful for the design and analysis of a wide range of electromagnetic problem. It has many applications to simulate 3D electromagnetic circuit included antenna design, micro strip antenna and circuits. The simulation results shows the antenna bandwidth of 13.9 GHz from 2.6 to 16.5 GHz. So we can clearly say that the antenna is ultra-wide band in nature.


2021 ◽  
pp. 491-496
Author(s):  
Aditi Chauhan ◽  
Utkarsh Jain ◽  
Aakash Warke ◽  
Manan Gupta ◽  
Ashok Kumar ◽  
...  

YMER Digital ◽  
2021 ◽  
Vol 20 (12) ◽  
pp. 790-807
Author(s):  
N Parthiban ◽  
◽  
M Mohamed Ismail ◽  

Microstrip antenna is an essential choice for Ultra Wide Band (UWB) applications of its light weight, low profile and easy to form antenna arrays. However, the design of microstrip patch antenna bandwidth is greatly affects by the dielectric substrate material (FR4). In this research, the bandwidth enhancement of MPA was designed by minimizing the dimension of Defected GP (DGP) in GP for Ultra Wide Band wireless applications. But, the antenna design complexity increases with the number of an operating frequency band. In this research, the MPA was designed as small as size of 10×13×1.6 mm and operates on frequency band between 3.1GHz to 10.6GHz for VSWR less than 2. The microstrip patch antenna was designed at 3.1GHz to 10.6GHz using High-Frequency Structure Simulator (HFSS) software. The simulation result shows that the proposed microstrip patch antenna obtained <-10dB of return loss from 3.1GHz to 10.6GHz throughout the frequency range. The measured result proves that the proposed microstrip patch antenna has better characteristics to fulfill the requirements of UWB applications


Author(s):  
Yanal ShaherAlFaouri ◽  
NoorMohammedAwad NoorMohammedAwad ◽  
Mohamed Abdelazeez

2020 ◽  
Vol 17 (2) ◽  
pp. 985-989
Author(s):  
Ahmed Jamal Abdullah Al-Gburi ◽  
I. M. Ibrahim ◽  
Z. Zakaria ◽  
Aymen Dheyaa Khaleel

In this article, the ultrawideband of micro-strip patch antenna is proposed bandwidth and gain were enhanced. The techniques that using to improve the gain and bandwidth are EBG slots and superstrate. The designed structure is implemented using computer simulation technology software (CST). The achievement gain of antenna is increased by 26.4% on 10.5 GHz of frequency. While the bandwidth of the proposed antenna is increased to 161%, the range from 2.67 to 26 GHz. This range of frequency is cover UWB, GPS, 5G mobile cellular, LTE, WLAN 802.11b/g UMTS2000, WiMAX, PCS1900, TD-SCDMA and Bluetooth applications. On the other hand, the ability of the superstrate allows to smaller leverage on the cross polarization accomplishment of an antenna slots. The compares between impedance bandwidth and gain by way of like the radiation patterns are debated at competence of benefit. Finally, there are perfect harmony between simulated and fabricated results.


Sign in / Sign up

Export Citation Format

Share Document