用于 5G 智能电表应用的增强型宽带 J 类模式功率放大器。

Q2 Pharmacology, Toxicology and Pharmaceutics
F1000Research Pub Date : 2024-09-12 eCollection Date: 2021-01-01 DOI:10.12688/f1000research.73498.2
Nagisetty Sridhar, Dr Chinnaiyan Senthilpari, Dr Mardeni R, Dr Wong Hin Yong
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引用次数: 0

摘要

背景:随着智能电表在工业/家庭用途中的使用大幅增加,其实施被认为是物联网(IoT)领域的一个关键挑战,从而导致了对新兴 5G 技术的需求。此外,智能电表必须高效地传输大量数据,这就需要大幅提高带宽。功率放大器(PA)在决定整个通信系统的效率和带宽方面发挥着重要作用。在各种模式的功率放大器中,新开发的 J 类模式功率放大器已被证明可在保持线性的情况下在宽带宽上实现高效率。方法:本文使用工作频率为 3.5 GHz 的 CGH40010F-GaN 器件,提出了一种 J 类模式功率放大器设计方法,以满足 5G 无线通信技术的要求,替代智能电网中用于高级计量基础设施 (AMI) 的现有 4G/LTE 技术。这项研究的主要目标是设计适当的匹配网络(M.Ns),以实现满足 5G 智能电网应用带宽要求的 Class-J 模式操作。利用负载拉动仿真获得的目标阻抗,使用 ADS EDA 工具从 3 个方面分析和设计了块元匹配网络。结果仿真结果表明,所提出的 J 类功率放大器在 3.5 GHz 时的最大漏极效率 (D.E) 为 82%,功率附加效率 (PAE) 为 67%,小信号增益为 13 dB,输出功率为 40 dBm(峰值 41.4 dBm),功率增益约为 7 dB,带宽约为 400 MHz,采用 28 V 电源,50 Ω 负载。结论通过微调匹配网络设计,可进一步提高拟议的 J 类功率放大器的效率和带宽,使其更适合 5G 智能电表/电网应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An enhanced broadband class-J mode power amplifier for 5G smart meter applications.

Background: With the tremendous increase in the usage of smart meters for industrial/ household purposes, their implementation is considered a crucial challenge in the Internet of Things (IoT) world, leading to a demand for emerging 5G technology. In addition, a large amount of data has to be communicated by smart meters efficiently, which needs a significant enhancement in bandwidth. The power amplifier (PA) plays a major role in deciding the efficiency and bandwidth of the entire communication system. Among the various modes of PAs, a newly developed Class-J mode PA has been proven to achieve high efficiency over a wide bandwidth by maintaining linearity. Methods: This paper proposes a Class-J mode PA design methodology using a CGH40010F-GaN device that operates at a 3.5 GHz frequency to meet the requirements of 5G wireless communication technology for the replacement of existing 4G/LTE technology used for advanced metering infrastructure (AMI) in smart grids. This research's main objective is to design the proper matching networks (M.Ns) to achieve Class-J mode operation that satisfies the bandwidth requirements of 5G smart grid applications. With the target impedances obtained using the load-pull simulation, lumped element matching networks are analyzed and designed in 3 ways using the ADS EDA tool. Results: The simulation results reveal that the proposed Class-J PA provides a maximum drain efficiency (D.E) of 82%, power added efficiency (PAE) of 67% with 13 dB small-signal gain at 3.5 GHz, and output power of 40 dBm (41.4 dBm peak) with a power gain of approximately 7 dB over a bandwidth of approximately 400 MHz with a 28 V power supply into a 50 Ω load. Conclusion: The efficiency and bandwidth of the proposed Class-J PA can be enhanced further by fine-tuning the matching network design to make it more suitable for 5G smart meter/grid applications.

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来源期刊
F1000Research
F1000Research Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
5.00
自引率
0.00%
发文量
1646
审稿时长
1 weeks
期刊介绍: F1000Research publishes articles and other research outputs reporting basic scientific, scholarly, translational and clinical research across the physical and life sciences, engineering, medicine, social sciences and humanities. F1000Research is a scholarly publication platform set up for the scientific, scholarly and medical research community; each article has at least one author who is a qualified researcher, scholar or clinician actively working in their speciality and who has made a key contribution to the article. Articles must be original (not duplications). All research is suitable irrespective of the perceived level of interest or novelty; we welcome confirmatory and negative results, as well as null studies. F1000Research publishes different type of research, including clinical trials, systematic reviews, software tools, method articles, and many others. Reviews and Opinion articles providing a balanced and comprehensive overview of the latest discoveries in a particular field, or presenting a personal perspective on recent developments, are also welcome. See the full list of article types we accept for more information.
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