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用于 5G 智能表应用的增强型宽带 C 类 J 模式功率放大器。

An enhanced broadband class-J mode power amplifier for 5G smart meter applications.

机构信息

FACULTY OF ENGINEERING, MULTIMEDIA UNIVERSITY, CYBERJAYA, SELANGOR, 63100, Malaysia.

出版信息

F1000Res. 2024 Sep 12;10:1099. doi: 10.12688/f1000research.73498.2. eCollection 2021.

Abstract

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. 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. 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. 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.

摘要

随着智能电表在工业/家庭用途中的使用量的大幅增加,其在物联网 (IoT) 世界中的实施被认为是一个关键挑战,这导致了对新兴 5G 技术的需求。此外,智能电表需要有效地传输大量数据,这需要显著提高带宽。功率放大器 (PA) 在决定整个通信系统的效率和带宽方面起着重要作用。在各种 PA 模式中,新开发的 Class-J 模式 PA 已被证明通过保持线性度可以在宽带宽内实现高效率。 本文提出了一种使用 CGH40010F-GaN 器件的 Class-J 模式 PA 设计方法,该器件工作在 3.5 GHz 频率下,以满足 5G 无线通信技术对现有用于智能电网先进计量基础设施 (AMI) 的 4G/LTE 技术的替代要求。本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。使用负载牵引仿真获得目标阻抗后,使用 ADS EDA 工具以 3 种方式分析和设计集总元件匹配网络。 仿真结果表明,所提出的 Class-J PA 在 3.5 GHz 时提供 82%的最大漏极效率 (D.E)、67%的功率附加效率 (PAE) 和 13 dB 的小信号增益,输出功率为 40 dBm(41.4 dBm 峰值),功率增益约为 7 dB,带宽约为 400 MHz,电源为 28 V ,负载为 50 Ω。 通过微调匹配网络设计,可以进一步提高所提出的 Class-J PA 的效率和带宽,使其更适合 5G 智能电表/电网应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f811/11523567/0d4a4ab4f7db/f1000research-10-171375-g0000.jpg

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