Envelope tracking power amplifiers with reduced peak-to-average power ratio RF input signals

Jinseong Jeong, D. Kimball, M. Kwak, P. Draxler, P. Asbeck
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引用次数: 16

Abstract

This paper presents a new technique to reduce the peak-to-average power ratio (PAPR) of the RF input signals used in envelope tracking (ET) power amplifiers without degrading the linearity and efficiency performance of the RF stages. Due to heavy gain compression, ET amplifiers can suffer from inefficient driver stages. The reduced PAPR RF input signal improves the efficiency of the driver amplifier thereby potentially improving the overall efficiency of the ET amplifier. This technique is demonstrated for a single carrier WCDMA signal using a dynamic supply modulator and a RF stage based on a GaAs HVHBT. The measurement shows that a power added efficiency (PAE) of 74% can be maintained for the RF stage while the PAPR of the RF input signal is reduced from 7.6 dB to 5.2 dB. The overall PAE accounting for the supply modulator is greater than 50% with an average output power of greater than 26 W and an adjacent channel leakage ratio of less than −45 and −53 dBc at 5- and 10-MHz frequency offsets, respectively.
具有降低射频输入信号峰均功率比的包络跟踪功率放大器
本文提出了一种降低包络跟踪(ET)功率放大器中射频输入信号的峰均功率比(PAPR)而不影响射频级线性度和效率性能的新技术。由于增益压缩过大,ET放大器的驱动级效率低下。减小的PAPR射频输入信号提高了驱动放大器的效率,从而潜在地提高了ET放大器的整体效率。该技术演示了单载波WCDMA信号,使用动态电源调制器和基于GaAs HVHBT的RF级。测量结果表明,当射频输入信号的PAPR从7.6 dB降低到5.2 dB时,可以保持74%的功率附加效率(PAE)。电源调制器的总体PAE大于50%,平均输出功率大于26w,相邻通道泄漏比分别小于- 45和- 53 dBc,频率偏移为5mhz和10mhz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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