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Peak-to-average power reduction using partial transmit sequences: a suboptimal approach based on dual layered phase sequencing

机译:使用部分发射序列的峰均功率降低:基于双层相位排序的次优方法

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摘要

A high peak-to-average power ratio (PAPR) is a major shortcoming in multicarrier systems, as it causes nonlinearity in the transmitter, degrading the performance of the system significantly. Partial transmit sequences (PTS) is one of the best methods in reducing PAPR, in which the information-bearing subcarriers are divided into M disjoint subblocks, each controlled by a phase rotation factor which brings PAPR down. Though PAPR reduction by PTS is more effective with more subblocks, there is a corresponding exponential increase in complexity. In this paper, a novel implementation of PTS is presented, in which a dual-layered approach is employed to reduce the complexity.
机译:高峰值平均功率比(PAPR)在多载波系统中是一个主要缺点,因为它会导致发射器出现非线性,从而大大降低系统的性能。部分传输序列(PTS)是降低PAPR的最佳方法之一,其中,将信息承载子载波划分为M个不相交的子块,每个子块由相位旋转因子控制,从而降低了PAPR。尽管通过PTS降低PAPR在更多子块上更为有效,但复杂度却呈指数增长。在本文中,提出了一种新颖的PTS实现,其中采用了双层方法来降低复杂性。

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