用于相控阵的线性、高效多载波包络跟踪跳频功率放大器

M. Navaroli, P. Draxler, Dane Malangone, Eric Brown, Edward Falcon, Jonmei J. Yan
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引用次数: 0

摘要

提出了一种用于下一代相控阵应用的高效多载波包络跟踪功率放大器系统,该系统能够从单个FPGA同时在四个射频功率放大器上跳频超过500 MHz的带宽。带限Adagio包络整形技术使多载波包络跟踪能够提高射频功率放大器的效率,同时开发了新的数字预失真算法,生成多波形模型,以提高宽带上的线性度。采用波峰因子减少算法来降低高PAPR,这是宽带多载波信号的结果。为了验证该并行系统在跳频时的高效率和线性度,在四个独立的ETPA元件上同时测试了四种不同类型波形信号的组合,每种波形信号包含两到四个载波,分布在500 MHz的带宽上,独立跳频。4个子系统的后数字预失真结果显示,频谱再生优于-35 dBc,漏极效率优于35%,增益为8 dB至12 dB,平均输出功率为40 dBm至43 dBm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear, Efficient Multi-Carrier Envelope Tracking Power Amplifiers with Frequency Hopping for Phased Arrays
An efficient, multi-carrier envelope tracking power amplifier system for next generation phased array applications, capable of frequency hopping over 500 MHz of bandwidth on four RF power amplifiers simultaneously from a single FPGA is presented with performance results. The band-limited Adagio envelope shaping technique enables multi-carrier envelope tracking to enhance RF power amplifier efficiency, while novel digital pre-distortion algorithms that generate multi-waveform models were developed to enhance linearity over wide bandwidths. Crest factor reduction algorithms were used to reduce the high PAPR that is a consequence of wide bandwidth multi-carrier signals. To validate the high efficiency and linearity of this parallelized system while frequency hopping, a combination of four different types of waveform signals, each containing two to four carriers spread across 500 MHz of bandwidth and independently frequency hopping, were tested on four separate ETPA elements simultaneously. Each of the four sub-systems demonstrated post digital pre-distortion results for spectral regrowth of better than -35 dBc, drain efficiency better than 35%, gain of 8 dB to 12 dB, and average output powers of 40 dBm to 43 dBm.
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