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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Digital Predistortion of Millimeter-Wave RF Beamforming Arrays Using Low Number of Steering Angle-Dependent Coefficient Sets
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Digital Predistortion of Millimeter-Wave RF Beamforming Arrays Using Low Number of Steering Angle-Dependent Coefficient Sets

机译:使用少量转向角相关系数集的毫米波RF波束成形阵列的数字预失真

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摘要

This paper proposes a single-input single-output (SISO) digital predistortion (DPD) model for linearizing millimeter-wave (mm-wave) RF beamforming arrays. It starts with a dual-input power amplifier (PA) model that accounts for steering angle-dependent load modulation effects. This dual-input model is then transformed into a SISO model under the assumption of weak PA nonlinearity and RF beamforming architecture. The underlying coefficients of the SISO array model incorporate the beamforming weights, antenna cross-coupling, channel coefficients, and any possible phase-shifter gain variation with phase shift setting. An over-the-air (OTA) measurement setup is finally developed to validate the capacity of a SISO DPD model to linearize two different arrays-under-test with 4 and 64 elements and radiating mm-wave modulated signals with 320- and 800-MHz bandwidth. Although, in principle, the DPD coefficients should be retrained for each steering angle, experimental results have shown that the same set of coefficients can be used over a wide range of steering angles, and only a few sets of trained DPD coefficients are sufficient to minimize the distortion in a mm-wave RF beamforming array across a 120 steering range.
机译:本文提出了一种用于线性化毫米波(mm-wave)RF波束成形阵列的单输入单输出(SISO)数字预失真(DPD)模型。它从双输入功率放大器(PA)模型开始,该模型考虑了转向角相关的负载调制效应。然后,在弱PA非线性和RF波束成形架构的假设下,将该双输入模型转换为SISO模型。 SISO阵列模型的基本系数包含了波束成形权重,天线交叉耦合,信道系数,以及任何可能的具有相移设置的相移器增益变化。最终开发出了一种空中(OTA)测量设置,以验证SISO DPD模型能够线性化两个不同的待测阵列(具有4个和64个元素)并辐射具有320和800毫米波的毫米波调制信号MHz带宽。尽管原则上应该针对每个转向角重新训练DPD系数,但实验结果表明,可以在较大的转向角范围内使用相同的系数集,并且只有少数几组经过训练的DPD系数足以最小化毫米波RF波束成形阵列在120个转向范围内的失真。

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