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Construction and Blind Estimation of Phase Sequences for Subcarrier-Phase Control Based PAPR Reduction in LDPC Coded OFDM Systems

机译:LDPC编码OFDM系统中基于子载波相位控制的PAPR降低的相序的构造和盲估计

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摘要

As described in this paper, construction and blind estimation methods of phase sequences are proposed for subcarrier-phase control based peak-to-average power ratio (PAPR) reduction in low-density parity-check (LDPC)-coded orthogonal frequency division multiplexing (OFDM) systems. On the transmitter side, phase sequence patterns are constructed based on a given parity-check matrix. The PAPR of the OFDM signal is reduced by multiplying the constructed phase sequence selected from the same number of candidates as the number of weighting factor (WF) combinations in a partial transmit sequence (PTS) method. On the receiver side, the phase sequence is estimated blindly using the decoding function, i.e., the most likely phase sequence among a limited number of possible phase sequence candidates is inferred by comparing the sum-product calculation results of each candidate. Computer simulation results show that PAPR of QPSK-OFDM and 16QAM-0FDM signals can be reduced respectively by about 3.7 dB and 4.0 dB without marked degradation of the block error rate (BLER) performance as compared to perfect estimation in an attenuated 12-path Rayleigh fading condition.
机译:如本文所述,针对低密度奇偶校验(LDPC)编码的正交频分多路复用(LDPC)编码中基于子载波相位控制的峰均功率比(PAPR)降低提出了相序的构造和盲估计方法OFDM)系统。在发射机侧,基于给定的奇偶校验矩阵构造相序模式。通过在部分发射序列(PTS)方法中乘以与加权因子(WF)组合的数目相同的候选者中选择的构造相位序列,可以减少OFDM信号的PAPR。在接收机侧,使用解码功能盲目地估计相位序列,即,通过比较每个候选者的求和积计算结果来推断有限数量的可能相位序列候选者中最可能的相位序列。计算机仿真结果表明,与在衰减的12路径瑞利中的完美估计相比,QPSK-OFDM和16QAM-0FDM信号的PAPR可以分别降低约3.7 dB和4.0 dB,而不会显着降低误码率(BLER)性能。衰落情况。

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