面向5G-LTE多载波应用的双四天线和节能平衡射频功率放大器的制造与优化

Isaac Kuma Yeboah, Richard Brace, Kwabena Agyapong-Kondua, Matthew Asiedu, Henrritta Kuma Yeboah
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引用次数: 0

摘要

无线技术是目前数字通信系统中研究最为活跃的领域之一。如果不了解天线的设计和操作,无线通信技术是不够的。广泛的射频设备,包括微波天线、微波炉、无绳电话和医疗设备,都使用2.4 GHz频段。本文采用抛物面网状天线对中心工作频率为2.445 GHz的双四面天线进行了构建和改进。将双四面天线置于抛物面网状天线盘中,以优化波的传播。结果表明,该天线获得了70% ~ 80%的信号强度范围,提高了WLAN覆盖的指向性。双四天线馈电被放置在一个网状圆盘的中心,这有助于将无线电波聚焦到天线上。双四向天线优于全向天线,其信号强度为56%。在MATLAB中分别对各天线的测试结果进行了仿真。然后使用数学模型复制双四轴和抛物线的综合影响,从而产生一种称为准四轴的独特波形传播模式,从而提高了性能。本研究构想并制作了一种平衡式射频功率放大器。在2.620 - 2.690GHz的频率范围内,大信号Si-LDMOS晶体管模型在P1dB饱和点上实现了53%的PAE, 41dBm的功率输出和14db的增益。
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Fabrication and optimization of bi-quad antenna and energy-efficient balanced RF power amplifier for 5G-LTE multi-carrier applications
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.
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