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

机译:实现多载波传输最小波峰因数的多项式调相方案

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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.
机译:诸如OFDM之类的多载波系统中的高峰均功率比(PAPR)会大大降低功率效率和性能。减轻该问题的现有方法在三个主要类别中是已知的,即削波/滤波,凸优化和随机方法。本文提出了一种多项式调相方案,以实现多载波OFDM信号的最大PAPR降低。使用该方案,通过子载波索引的多项式函数来调整每个子载波相位。这种多项式函数的系数可以在发射机处通过搜索方法确定,并且可以使用现有的导频音调来传递。该方案有望最大程度地降低PAPR,而不会使频谱模板失真或丢失数据速率,而对现有OFDM标准几乎不需要任何更改。

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