Javascript must be enabled to continue!
Fabrication and optimization of bi-quad antenna and energy-efficient balanced RF power amplifier for 5G-LTE multi-carrier applications
View through CrossRef
Wireless technology is presently one of the most actively researched fields of digital communication systems. Wireless communication technologies are insufficient without an understanding of antenna design and operation. A wide range of radio frequency equipment, including microwave antennas, microwave ovens, cordless telephones, and medical devices, utilize the 2.4 GHz band. In this article, a parabolic mesh dish was used to build and improve a bi-quad antenna with a central working frequency of 2.445 GHz. The bi-quad antenna was put in a parabolic mesh dish to optimize wave propagation. The findings show that the antenna obtained a signal strength range of 70% to 80%, increasing the directivity of WLAN coverage. The bi-quad antenna feed was placed in the center of a mesh dish, which assists in focusing radio waves onto the antenna. The bi-quad antenna outperformed the omnidirectional antenna, which had a signal strength of 56%. The results of each antenna test were separately simulated in MATLAB. The combined impact of bi-quad and parabolic was then duplicated using mathematical models, resulting in a unique waveform propagation pattern known as para-quad, which improved performance. A balanced RF power amplifier was conceived and built in this study. A 2.620 - 2.690GHz frequency range on a large signal Si-LDMOS transistor model achieves 53% PAE, 41dBm power output, and 14 dB gain at the P1dB saturation point.
International Telecommunication Union
Title: Fabrication and optimization of bi-quad antenna and energy-efficient balanced RF power amplifier for 5G-LTE multi-carrier applications
Description:
Wireless technology is presently one of the most actively researched fields of digital communication systems.
Wireless communication technologies are insufficient without an understanding of antenna design and operation.
A wide range of radio frequency equipment, including microwave antennas, microwave ovens, cordless telephones, and medical devices, utilize the 2.
4 GHz band.
In this article, a parabolic mesh dish was used to build and improve a bi-quad antenna with a central working frequency of 2.
445 GHz.
The bi-quad antenna was put in a parabolic mesh dish to optimize wave propagation.
The findings show that the antenna obtained a signal strength range of 70% to 80%, increasing the directivity of WLAN coverage.
The bi-quad antenna feed was placed in the center of a mesh dish, which assists in focusing radio waves onto the antenna.
The bi-quad antenna outperformed the omnidirectional antenna, which had a signal strength of 56%.
The results of each antenna test were separately simulated in MATLAB.
The combined impact of bi-quad and parabolic was then duplicated using mathematical models, resulting in a unique waveform propagation pattern known as para-quad, which improved performance.
A balanced RF power amplifier was conceived and built in this study.
A 2.
620 - 2.
690GHz frequency range on a large signal Si-LDMOS transistor model achieves 53% PAE, 41dBm power output, and 14 dB gain at the P1dB saturation point.
Related Results
Cellular and Wi-Fi technologies evolution: from complementarity to competition
Cellular and Wi-Fi technologies evolution: from complementarity to competition
This PhD thesis has the characteristic to span over a long time because while working on it, I was working as a research engineer at CTTC with highly demanding development duties. ...
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Using coil antennae as transmitter and receiver to develop a geosteering tool, one has to increase the spacing between the transmitter and receiver to detect formation boundaries f...
Fair coexistence between LTE and Wi-Fi in unlicensed spectrum
Fair coexistence between LTE and Wi-Fi in unlicensed spectrum
La coexistence équitable entre LTE et Wi-Fi dans le spectre non licencié
Les systèmes de communication des nouvelles générations telles que LTE et LTE-Advanced, leu...
Strategi Refarming Frekuensi 1800 MHz Untuk Implementasi LTE di Indonesia
Strategi Refarming Frekuensi 1800 MHz Untuk Implementasi LTE di Indonesia
LTE adalah teknologi yang digunakan dalam generasi keempat dengan arsitektur yang lebih sederhana dan semua berbasis IP (Internet Protocol). Teknologi baru ini membutuhkan spektrum...
Television and
FM
Broadcasting Antennas
Television and
FM
Broadcasting Antennas
Abstract
Television broadcast services are located within four bands: the lower very‐high‐frequency (VHF) bands of 54–72 and 76–88 MHz, the upper VHF band of 174–216 MHz,...
ANALISIS PERANCANGAN LTE HOME PADA JARINGAN 4G LTE BERBASIS OPEN RADIO ACCESS NETWORK
ANALISIS PERANCANGAN LTE HOME PADA JARINGAN 4G LTE BERBASIS OPEN RADIO ACCESS NETWORK
Penelitian tentang LTE berlanjut hingga teknologi generasi kelima secara resmi ditetapkan oleh badan standar. Ketersediaan jaringan transmisi berbasis serat optik mendorong riset u...
Optimalisasi Throughput LTE Femtocell Pada Jaringan Koeksistensi LTE-GSM
Optimalisasi Throughput LTE Femtocell Pada Jaringan Koeksistensi LTE-GSM
Throughput pada jaringan koeksistensi GSM dan LTE Femto sangat tergantung pada kondisi sebaran femtocell, diantaranya jumlah dan posisi femtocell. Pada studi sebelumnya telah banya...
A novel S-shaped frequency and pattern reconfigurable patch antenna for 4G LTE, WLAN/Wi-Max application
A novel S-shaped frequency and pattern reconfigurable patch antenna for 4G LTE, WLAN/Wi-Max application
Purpose
In wireless communication system, use of multiple antennas for different requirements of system will increase the system complexity. However, reconfigurable antenna is maxi...

