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Joint Mitigation of Power Amplifier and I/Q Modulator Impairments in Broadband Direct-Conversion Transmitters

机译:联合缓解宽带直接转换发射机中的功率放大器和I / Q调制器损害

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摘要

In this paper, we present a novel digital predistorter structure for joint mitigation of frequency-dependent power amplifier (PA) and in-phase and quadrature (I/Q) modulator impairments in direct-conversion radio transmitters. The predistorter is based on an extended parallel Hammerstein structure, yielding a predistorter that is fully linear in the parameters. In the parameter estimation stage, the indirect learning architecture is utilized. The proposed technique is the first technique in the literature to consider the joint estimation and mitigation of frequency-dependent PA and I/Q modulator impairments. Extensive simulation and measurement analysis is carried out to verify the operation and efficacy of the proposed predistortion structure. It is shown that the adjacent channel power ratio is increased by more than 20 dB in all experiments when using the proposed method, and that the performance of the reference techniques is clearly exceeded.
机译:在本文中,我们提出了一种新颖的数字预失真器结构,用于联合缓解直接变频无线电发射机中的频率相关功率放大器(PA)和同相和正交(I / Q)调制器损伤。预失真器基于扩展的并行Hammerstein结构,产生的预失真器在参数上完全线性。在参数估计阶段,利用间接学习架构。所提出的技术是文献中考虑频率依赖的PA和I / Q调制器损伤的联合估计和缓解的第一项技术。进行了广泛的仿真和测量分析,以验证所提出的预失真结构的操作和有效性。结果表明,使用该方法在所有实验中,相邻信道的功率比均增加了20 dB以上,并且明显超出了参考技术的性能。

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