一种基于子载波相位控制的编码空分复用OFDM系统峰值功率降低方法

O. Muta
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引用次数: 1

摘要

针对涡轮编码空分复用正交频分复用(SDM-OFDM)系统,提出了一种基于子载波相位控制的峰值功率降低(PPR)方法。PPR方法是现有部分发射序列(PTS)的扩展版本,对不同天线单元上相同数量的簇信号用相同的加权因子(wf)加权,通过乘wf调整每个簇信号的相位来减小OFDM信号的PAPR,使OFDM信号的PAPR最小。在接收端,WF估计和纠错与turbo解码一起进行,其中利用SDM-OFDM系统中经过不同信道的两个数据流的解码结果来估计WF。将9簇的PPR方法应用于64-QAM OFDM信号时,发射信号在10-4 CCDF处的瞬时功率可降低约1.9 dB。此外,当使用PPR方法对64QAM-OFDM系统施加峰值限制器时,与不降低峰值功率的情况相比,10-4 CCDF处的瞬时功率降低了约3.1 dB,而所提出的方法在衰减的12径瑞利衰落条件下获得了几乎相同的分组误码率(BLER)性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A subcarrier-phase control based peak power reduction method for coded space division multiplexed OFDM systems
In this paper, we propose a sub-carrier phase control based peak power reduction (PPR) method for a turbo-coded space division multiplexed orthogonal frequency division multiplexing (SDM-OFDM) system. The PPR method is an extended version of the existing partial-transmit sequence (PTS), where the same numbered cluster signals at different antenna elements are weighted by the same weighting factors (WFs) and PAPR of OFDM signal is reduced by adjusting the phase of each cluster signal by multiplying WFs so as to minimize PAPR of OFDM signals. On the receiver side, WF estimation and error correction are jointly performed with turbo decoding, where WFs are estimated by exploiting the decoding results of two data streams passing through different channel in SDM-OFDM systems. When the PPR method using 9 clusters is applied to 64-QAM OFDM signal, instantaneous power of the transmit signal at the CCDF of 10-4 can be reduced by about 1.9 dB. In addition, when a peak limiter is applied to 64QAM-OFDM system using the PPR method, instantaneous power at the CCDF of 10-4 is reduced by about 3.1 dB as compared to case without any peak power reduction, while the proposed method achieves almost the same block error rate (BLER) performance in attenuated 12-path Rayleigh fading condition.
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