基于智能梯度-项目主动星座扩展方法的FBMC系统PAPR降低

Nuan van der Neut, B. T. Maharaj, Frederick H. de Lange, Gustavo J. González, F. Gregorio, J. Cousseau
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引用次数: 27

摘要

滤波器组多载波(FBMC)调制方案最近重新引起了人们的兴趣,并被认为是正交频分复用(OFDM)的可行替代方案。然而,FBMC具有与OFDM系统相同的高峰值平均功率比(PAPR)缺点。由于FBMC符号的重叠特性,传统的OFDM PAPR降低技术不能直接应用于FBMC。在OFDM系统智能梯度项目主动星座扩展(SGP-ACE) PAPR降低方法的基础上,提出了一种新的方法,即FBMC SGP-ACE方法。该方法应用于一组连续的FBMC符号,从而补偿了FBMC调制的重叠特性。所提出的方法比投影-凸集(POCS) ACE方法需要更少的迭代才能收敛到更低的PAPR,并且与当前需要添加高级信号处理的FBMC PAPR降低技术相反,可以显著降低复杂性。提出的FBMC SGP-ACE方法比传统的FBMC POCS-ACE方法在第一次迭代时以10-4的剪辑概率降低了2.6dB的PAPR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PAPR reduction in FBMC systems using a smart gradient-project active constellation extension method
The filter bank multicarrier (FBMC) modulation scheme has recently seen renewed interest and is being considered as a viable alternative to orthogonal frequency division multiplexing (OFDM). FBMC, however suffers from the same high peak-to-average power ratio (PAPR) drawback as OFDM systems. Conventional OFDM PAPR reduction techniques cannot be directly applied to FBMC due to the overlapping nature of FBMC symbols. A novel technique is proposed based on an evolution of the smart-gradient project active constellation extension (SGP-ACE) PAPR reduction method used for OFDM systems, namely the FBMC SGP-ACE method. The proposed method is applied to a set of contiguous FBMC symbols, thereby compensating for the overlapping nature of FBMC modulation. The proposed method requires less iterations than a projection-onto-convex-sets (POCS) ACE approach to converge to a lower PAPR and significant reduction in complexity can be achieved as opposed to current FBMC PAPR reduction techniques which tend to require the addition of advanced signal processing. The proposed FBMC SGP-ACE method outperforms a conventional FBMC POCS-ACE method by 2.6dB in PAPR reduction at a clip probability of 10-4 on the 1st iteration.
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