新型OFDM信号低功率数字子带预失真器

A. N. Lozhkin, T. Maniwa, H. Ishikawa
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引用次数: 0

摘要

自适应数字预失真器(DPD)为补偿非线性失真和提高高功率放大器(hpa)效率提供了一种有效的技术。然而,在小型小区环境中,DPD所消耗的功率不再是可以忽略不计的,并且会显著影响DPD+HPA级联的整体效率。在本文中,我们提出了一种新的低功耗基带DPD架构。所提出的DPD由级联子带滤波器块和无记忆自适应预失真器组成。采用子带滤波技术补偿正交频分复用(OFDM)信号因HPA记忆效应引起的带内畸变,采用无记忆预失真器补偿带内和带外发射(Tx)信号的畸变。子带滤波器的采样率仅为Tx OFDM信号采样率的1/(N$\cdot$L) (N为IFFT大小,L为Tx信号过采样比)。因此,所提出的子带DPD的功耗明显低于典型的记忆多项式(M-P) DPD,其工作速率为N$\cdot$L。对20 mhz LTE系统的仿真结果表明,与M-P DPD相比,所提出的子带DPD消耗的功率减少了五倍,并提供了相似的线性化质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Low power Digital Sub-band Predistorter for OFDM Signals
The adaptive digital predistorter (DPD) offers an effective technique for compensating for nonlinear distortion and improving the efficiency of high power amplifiers (HPAs). However, in small cell environments, the power consumed by the DPD is no longer negligible and significantly affects the overall efficiency of the DPD+HPA cascade. In this paper, we present new architecture for the baseband DPD that has very low power consumption. The proposed DPD comprises a cascade sub-band filters block and a memoryless adaptive predistorter. The sub-band filtering technique is used to compensate for the orthogonal frequency-division multiplexing (OFDM) signal in-band distortions caused by the HPA memory effect, and the memoryless predistorter compensates for both the in-band and out-of-band transmitting (Tx) signal distortions. The sampling rate of the sub-band filters is only 1/(N$\cdot$L) of the sampling rate of the Tx OFDM signal (N is IFFT size, L is the Tx signal oversampling ratio). Therefore, the power consumption of the proposed subband DPD is significantly less than that of the typical memorypolynomial (M-P) DPD operating at a rate of N$\cdot$L. The simulation result for a 20-MHz LTE system shows that the power consumed by the proposed sub-band DPD is reduced by a factor of five compared to that consumed by the M-P DPD and provides similar linearization quality.
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