Single-Input Single-Output Digital Predistortion of Multi-user RF Beamforming Arrays

E. Ng, A. Ayed, P. Mitran, S. Boumaiza
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引用次数: 10

Abstract

We investigate the application of single-input single-output (SISO) digital predistortion (DPD) to mitigate the nonlinearity in millimeter-wave multi-user RF beamforming arrays. In principle, SISO DPD may not be sufficient to linearize such arrays as a multiple-input one may be required due to coupling between the sub-array antennas. Nevertheless, in practice, the coupling between antennas of different sub-arrays may be much smaller than the coupling between antennas of the same sub-array. It is first shown mathematically that if the coupling between sub-arrays is small, then SISO DPD is sufficient to linearize such arrays. This is then confirmed in practice by linearizing two co-located 64-element sub-arrays driven by 800 MHz modulated signals at 28 GHz. Using four sets of SISO DPD coefficients, the EVM and ACPR were improved from as much as 8% and 30 dBc to better than 2% and 40 dBc, respectively, across all steering angle combinations of the two sub-arrays.
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多用户射频波束形成阵列的单输入单输出数字预失真
研究了单输入单输出(SISO)数字预失真(DPD)技术在毫米波多用户射频波束形成阵列中的应用。原则上,SISO DPD可能不足以线性化这样的阵列,因为由于子阵列天线之间的耦合可能需要多输入阵列。然而,在实践中,不同子阵列的天线之间的耦合可能比同一子阵列的天线之间的耦合小得多。首先从数学上表明,如果子阵列之间的耦合较小,则SISO DPD足以线性化此类阵列。然后在实践中通过线性化两个共位于的64元子阵列来证实这一点,这些子阵列由28ghz的800 MHz调制信号驱动。使用四组SISO DPD系数,在两个子阵列的所有转向角度组合中,EVM和ACPR分别从8%和30 dBc提高到2%和40 dBc以上。
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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