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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Supply- and Load-Modulated Balanced Amplifier for Efficient Broadband 5G Base Stations
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Supply- and Load-Modulated Balanced Amplifier for Efficient Broadband 5G Base Stations

机译:用于高效宽带5G基站的电源和负载调制平衡放大器

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This paper presents a broadband efficient power amplifier (PA) targeting sub-6-GHz 5G base station applications. Due to the demanding requirements in both peak-to-average power ratio (PAPR) and bandwidth in 5G systems, we employ a combination of both load and supply modulation for efficiency enhancement. Active matching, implemented using an RF-input load-modulated balanced amplifier (LMBA) architecture, enables efficient octave-bandwidth operation. Supply modulation, which is carrier frequency agnostic, is then used to further extend the back-off efficiency. This paper focuses on a study of supply modulation strategies for the load-modulated PA using an efficient GaN eight-level discrete supply modulator. To overcome the bandwidth limitations associated with discrete-level switching, a commutation rate reduction (CRR) filter is applied in digital baseband and its effects are analyzed theoretically and experimentally. The supply-modulated LMBA is characterized across 1.8-3.8 GHz with 100-MHz, 10-dB PAPR signals. An output power of 34 dBm with average composite (total) PAE ranging from 22.4 to 43.9 across the band is demonstrated, with an ACLR of about -50 dBc after digital predistortion.
机译:本文介绍了一种面向 sub-6 GHz 5G 基站应用的宽带高效功率放大器 (PA)。由于 5G 系统对峰均功率比 (PAPR) 和带宽的要求非常苛刻,我们采用负载和电源调制的组合来提高效率。有源匹配采用RF输入负载调制平衡放大器(LMBA)架构实现,可实现高效的倍频程带宽操作。然后,使用与载波频率无关的电源调制来进一步提高回退效率。本文重点研究了使用高效GaN八电平分立式电源调制器的负载调制PA的电源调制策略。为了克服与分立电平开关相关的带宽限制,在数字基带中应用了换向速率降低(CRR)滤波器,并从理论和实验上分析了其效果。电源调制的 LMBA 的表征频率范围为 1.8-3.8GHz,具有 100MHz、10dB PAPR 信号。结果表明,整个频段的输出功率为34 dBm,平均复合(总)PAE范围为22.4%至43.9%,数字预失真后的ACLR约为-50 dBc。

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