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A Novel Constellation Reshaping Method for PAPR Reduction of OFDM Signals

机译:一种减少OFDM信号PAPR的星座整形新方法

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In this paper, we propose a constellation reshaping method for peak-to-average power ratio (PAPR) reduction in orthogonal frequency division multiplexing (OFDM) systems. The key idea of the proposed method is to generate a reshaped quadrature amplitude modulation (R-QAM) constellation, in which the minimum distance of the R-QAM is the same as that of the traditional QAM constellation. When the novel R-QAM constellation is employed with the traditional partial transmit sequence (PTS) and selected mapping (SLM) methods in OFDM systems, called as the R-PTS and R-SLM methods in this paper, respectively, the mean square errors between the constellations of the received data and each R-QAM rotated by different phase rotation factors are calculated at the receiver, and the phase rotation factor with the minimum mean square error is selected to recover the original data without side information. Therefore, the flexibility in phase rotation choice and the ability to avoid data rate loss make the R-PTS and R-SLM methods more suitable for good bit-error-rate performance in OFDM systems. Theoretical analysis and simulation results show that the R-PTS and R-SLM methods could provide the same PAPR reduction and bit-error-rate as those of the conventional PTS and SLM methods with perfect side information, respectively.
机译:在本文中,我们提出了一种星座图重塑方法,用于在正交频分复用(OFDM)系统中降低峰均功率比(PAPR)。该方法的关键思想是生成一个重构的正交幅度调制(R-QAM)星座图,其中R-QAM的最小距离与传统QAM星座的最小距离相同。当将新颖的R-QAM星座图与OFDM系统中的传统部分发送序列(PTS)和选择映射(SLM)方法结合使用时,本文分别称为R-PTS和R-SLM方法,均方误差在接收器上计算接收到的数据星座图和每个由不同相位旋转因子旋转的R-QAM的相位之间的差,并且选择具有最小均方误差的相位旋转因子以恢复没有边信息的原始数据。因此,相位旋转选择的灵活性以及避免数据速率丢失的能力使R-PTS和R-SLM方法更适合OFDM系统中的良好误码率性能。理论分析和仿真结果表明,R-PTS和R-SLM方法可以提供与传统PTS和SLM方法相同的,具有完善辅助信息的PAPR降低和误码率。

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