Joint IQ imbalance and PA nonlinearity pre-distortion for highly integrated millimeter-wave transmitters

Linlin Fan, Yabo Li, Minjian Zhao
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引用次数: 11

Abstract

Due to the demands for high data rate and high energy efficiency, Millimeter-Wave (mmWave) communication systems have drawn a lot of attention recently. The mmWave transceivers are usually highly integrated but have severe RF impairments. Thus, to design pre-distortion schemes, it is difficult to pre-distort each RF component separately. In this paper, we consider joint IQ (In-phase and Quadrature) imbalance and PA (Power Amplifier) nonlinearity pre-distortion designs for mmWave transmitters. In the designs, we treat the transmitter as a whole and only process the baseband input and PA output. We propose two methods, one is the two-step design, where the IQ imbalance and PA nonlinearity are pre-distorted in two-steps with a unified training structure. The other is the one-step design, where we first derive the model that can jointly characterize IQ imbalance and PA nonlinearity, then one block is used to pre-distort the both. We also show that decreasing the number of coefficients properly can decrease the computational complexity without significant loss in performance.
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高集成度毫米波发射机的联合IQ不平衡和PA非线性预失真
由于对高数据速率和高能效的要求,毫米波通信系统近年来受到了人们的广泛关注。毫米波收发器通常是高度集成的,但有严重的射频损伤。因此,要设计预失真方案,很难分别对每个射频分量进行预失真。本文考虑了毫米波发射机的IQ(同相和正交)不平衡和PA(功率放大器)非线性预失真联合设计。在设计中,我们将发射机作为一个整体,只处理基带输入和PA输出。我们提出了两种方法,一种是两步设计,在统一的训练结构下,分两步对IQ不平衡和PA非线性进行预扭曲。另一种是一步设计,首先推导出IQ不平衡和PA非线性共同表征的模型,然后用一个块对两者进行预扭曲。我们还表明,适当减少系数的数量可以降低计算复杂度,而不会显著降低性能。
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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