Pushing the Linearity Limits of a Digital Polar Transmitter

M. Hashemi, M. Alavi, L. D. de Vreede
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引用次数: 4

Abstract

The maximum achievable linearity of a digital polar transmitter (DPTX) is mainly constrained by two RF-DAC associated nonidealities; namely, aliasing of sampling spectral replicas (SSR) of the AM and PM signals, and the presence of nonuniform quantization noise. In this work, using DPTX hardware linearization, in combination with PM SSR filtering and iterative learning control (ILC) algorithm improved by look-up tables (LUT), a CMOS DPTX is linearized close to its theoretical ACPR and EVM limits as predicted by its resolution. Using the ILC technique as underlying basis, an effective real-time direct-learning digital predistortion (DPD) technique is proposed. Measurement results show −60/−53 dBc ACPR and −60/−47 dB EVM using the ILC algorithm for 16/64 MHz OFDM signals, and −55/−48 dBc ACPR and −50/−44 dB EVM using the proposed DPD for 16/64 MHz OFDM signals. To the best of author's knowledge, this is the highest linearity reported for a DPTX operating with wideband signals.
推进数字极极发射机的线性极限
数字极极发射机(DPTX)的最大可实现线性度主要受到RF-DAC相关的两个非理想性的限制;即调幅和调幅信号的采样频谱副本(SSR)混叠,以及不均匀量化噪声的存在。在这项工作中,使用DPTX硬件线性化,结合PM SSR滤波和通过查找表(LUT)改进的迭代学习控制(ILC)算法,将CMOS DPTX线性化,接近其理论ACPR和EVM极限,如其分辨率预测的那样。以ILC技术为基础,提出了一种有效的实时直接学习数字预失真(DPD)技术。测量结果表明,对于16/64 MHz的OFDM信号,采用ILC算法的ACPR值为- 60/−53 dBc, EVM值为- 60/−47 dB;对于16/64 MHz的OFDM信号,采用本文提出的DPD算法的ACPR值为- 55/−48 dBc, EVM值为- 50/−44 dB。据作者所知,这是使用宽带信号的DPTX所报告的最高线性度。
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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