A polynomial phasing scheme to realize minimum crest factor for multicarrier transmission

Yanyan Wu
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引用次数: 1

Abstract

High peak-to-average power ratio (PAPR) in multi-carrier systems such as OFDM can significantly reduce power efficiency and performance. Existing methods to mitigate this problem are known in three major categories, i.e. clipping /filtering, convex optimisation and stochastic approach. In this paper, a polynomial phasing scheme is proposed to achieve maximum PAPR reduction for a multicarrier OFDM signal. Using this scheme, each subcarrier phase is adjusted by a polynomial function of the subcarrier index. The coefficients of such polynomial function can be determined at the transmitter by a search method, and can be conveyed using existing pilot tones. The scheme promising maximum PAPR reduction with no distortion to the spectral mask or loss in data rate requires little change to existing OFDM standards.
一种实现多载波传输波峰系数最小的多项式相位方案
在OFDM等多载波系统中,较高的峰均功率比(PAPR)会显著降低系统的功率效率和性能。缓解这一问题的现有方法主要有三大类,即裁剪/滤波、凸优化和随机方法。为了最大限度地降低多载波OFDM信号的PAPR,本文提出了一种多项式相位方案。利用该方案,每个子载波相位由子载波指数的多项式函数来调整。该多项式函数的系数可以在发射机通过搜索方法确定,并且可以使用现有的导频音进行传输。该方案承诺最大限度地降低PAPR,而不会对频谱掩模造成失真或数据速率损失,对现有的OFDM标准几乎没有改变。
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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