用于12db PAPR信号的UHF类E/F2同相发射机

D. Vegas, J. Perez-Cisneros, M. Ruiz, Jose A. Garcia
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引用次数: 6

摘要

本文利用连续e类模式提供的自由度,以减少在大范围电阻性负载下近似零电压开关(ZVS)操作时场效应管导通状态电阻的影响。设计了一种UHF e /F2类功率放大器(PA),该放大器包括一个集总元件漏极终端网络,用于合成最佳负载调制(LM)轨迹,在10 dB以上的输出功率控制范围内保持尽可能高的效率。在此基础上,实现了700 MHz频段的分相方案。结果表明,当输出功率低于峰值(47 W)的5% (-13 dB)时,该方法的效率高于60%。在混合模式操作和应用数字预失真(DPD)下,可以线性再现峰均功率比(PAPR)高达12.2 dB的10 MHz LTE信号,平均效率和PAE值分别为46.6%和42.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UHF Class E/F2 Outphasing Transmitter for 12 dB PAPR Signals
This paper exploits the degree of freedom provided by the continuous class-E modes in order to reduce the impact of a FET on-state resistance when approximating the zero voltage switching (ZVS) operation along a wide range of resistive loads. A UHF class-E/F2 power amplifier (PA), which includes a lumped element drain terminating network to synthesize the optimal load modulation (LM) trajectory, has been designed to maintain an efficiency as high as possible along an output power control range above 10 dB. Based on this PA, an outphasing scheme in the 700 MHz frequency band has been implemented. It is shown to provide an efficiency higher than 60% up to an output power below 5% (-13 dB) of its peak value (47 W). Under mixed-mode operation and applying digital predistorsion (DPD), a 10 MHz LTE signal with a peak-to-average power ratio (PAPR) as high as 12.2 dB has been linearly reproduced with average efficiency and PAE values of 46.6% and 42.9%, respectively.
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