64 qam和256 qam编码OFDM系统的PMEPR控制方法

S. Huang, Hsiao-Chun Wu, J. Cioffi
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引用次数: 1

摘要

正交频分复用(OFDM)是一种流行的通信技术,用于减轻高阶调制(如正交调幅(QAM))带来的多径失真。然而,无编码OFDM系统也有较高的峰值平均包络功率比(PMEPR)的严重缺点。另一方面,编码OFDM系统可以减少PMEPR问题,但往往导致低码率。因此,在OFDM系统的设计中,PMEPR和码率之间存在权衡。本文对OFDM 64- qam和256-QAM序列的PMEPR降低进行了全面的研究。提出了4个新的64-QAM序列族和7个新的256-QAM序列族,以实现最低的PMEPR,最高的码率,或者在这两个指标之间进行权衡。通过与其他所有的16- qam或64-QAM序列的比较,这些新的OFDM序列族可以实现更高的码率。此外,许多这些新序列的PMEPR比其他OFDM序列低。调整PMEPR和码率之间的权衡可以满足低PMEPR的严格要求或根据不同的系统要求对高码率的需要。此外,所提出的新序列的构造方法非常简单。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel PMEPR Control Approach for 64- and 256-QAM Coded OFDM Systems
Orthogonal frequency division multiplexing (OFDM) is a prevalent telecommunication technology to mitigate multipath distortion with high-order modulations such as quadrature amplitude modulation (QAM). However, uncoded OFDM systems also have a serious drawback of high peak-to-mean envelope power ratio (PMEPR). On the other hand, coded OFDM systems can reduce the PMEPR problem but often lead to low code rates. There is thus a tradeoff between PMEPR and code rate in the design of OFDM systems. In this paper, PMEPR reduction for OFDM 64- and 256-QAM sequences is comprehensively studied. Four new families of 64-QAM sequences and seven new families of 256-QAM sequences are proposed to achieve the lowest PMEPR, the highest code rate, or the tradeoffs between these two metrics. Through the comparison with all other OFDM 16- or 64-QAM sequences, these new families of OFDM sequences can facilitate higher code rates. Furthermore, many of these new sequences have lower PMEPR than other OFDM sequences. Adjustment of the tradeoff between PMEPR and code rate can be made to meet the stringent demand in low PMEPR or the need for high code rate subject to various system requirements. Moreover, the construction method of the proposed new sequences is quite simple.
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