用于GFDM系统非线性失真抑制的预失真器

A. E. Jayati, Agus Margiantono
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引用次数: 0

摘要

下一代无线系统使用被称为广义频分复用(GFDM)的非正交调制技术。大功率放大器(HPA)的非线性对无线系统的性能影响很大。采用HPA模型Rapp的GFDM系统无相位畸变,只有幅度畸变。非线性失真的影响包括振幅、信号星座分布和频谱分布的畸变。这篇论文有两个贡献。首先,研究了加性高斯白噪声(AWGN)和瑞利信道下,HPA模型Rapp的非线性失真对GFDM系统的影响。这个模型的简单性是它被选中的原因,它有一个AM/AM(幅度调制/幅度调制)曲线。其次,提出了在GFDM系统中使用预失真器对HPA进行线性化的方法。该预失真器可以减轻HPA的非线性失真影响。该技术在发送器部分实现。研究的系统性能由误码率(BER)分析、星座图和频谱分析决定。HPA在信号频谱中产生55 dB的带外(OOB)上升。预失真器系统的OOB值降低了55 dB,成功地补偿了HPA效应。
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Predistorter for Nonlinear Distortion Mitigation in GFDM Systems
Next-generation wireless systems use the non-orthogonal modulation technique known as generalized frequency division multiplexing (GFDM). The nonlinearity of the high-power amplifier (HPA) greatly affects the performance of the wireless system. Without phase distortion and only amplitude distortion in the GFDM system using HPA Model Rapp. The effects of nonlinear distortion that occur involve distortion of the amplitude, signal constellation distribution, and spectral distribution. There are two contributions to this paper. First, the impact of HPA Model Rapp's nonlinear distortion on the GFDM system in the AWGN (additive white Gaussian noise) and Rayleigh channels was investigated. The simplicity of this model is the reason it was picked and has an AM/AM (amplitude modulation/amplitude modulation) curve. Second, the linearization of HPA with the use of a predistorter method in GFDM systems has been proposed. The nonlinear distortion impact of HPA can be mitigated by this predistorter. This technique is implemented in the transmitter section. The system performance investigated is determined by a bit error rate (BER) analysis, a constellation diagram, and a spectrum analysis. HPA generates a 55 dB rise in out-of-band (OOB) in the signal spectrum. The HPA effect was successfully compensated for by a 55 dB decrease in the OOB value of the predistorter system.
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