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A Method of Phase Noise Estimation and Compensation Based on Golay Sequence in Time Domain for SC-FDE Millimeter-Wave Communication Systems

机译:基于SC-FDE毫米波通信系统时域的高乐序列的相位噪声估计和补偿方法

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A method of phase noise (PHN) estimation and compensation based on the Golay sequence is proposed in the article for single-carrier frequency-domain equalization (SC-FDE) Millimeter-Wave Systems. First, the channel is estimated based on the correlation with the Golay sequence. Then, the 64-length cyclic prefix (CP) between data blocks is adopted to estimate the common phase error (CPE) of the data blocks after equalization in the frequency domain. Finally, the PHN estimation and compensation after equalization is computed so that the phase deviation can be avoided. Different from previous researches, the algorithm is developed in SC-FDE Systems, using a system symbol transmission rate of 2.4576G sym/s, 64QAM modulation, and each transmission frame structure of 9600 data blocks. In this case, the effect of PHN will be magnified. 1/2 LDPC encoding and decoding are also introduced into this system to further improve the performance. Compared with present algorithms, the algorithm shows better comprehensive performance in MSE of PHN before and after equalization, with the complexity of integrated computation taken into consideration.
机译:在单载波频域均衡(SC-FDE)毫米波系统的物品中提出了一种基于Golay序列的相位噪声(PHN)估计和补偿的方法。首先,基于与Golay序列的相关性估计信道。然后,采用数据块之间的64长循环前缀(CP)来估计频域中均衡后数据块的公共相位误差(CPE)。最后,计算均衡后的PHN估计和补偿,从而可以避免相位偏差。与以前的研究不同,该算法是在SC-FDE系统中开发的,使用2.4576G Sym / s,64QAM调制和9600个数据块的每个传输帧结构的系统符号传输速率。在这种情况下,PHN的效果将被放大。 1/2 LDPC编码和解码也被引入该系统中以进一步提高性能。与本算法相比,该算法在均衡前后PHN的MSE中显示出更好的全面性能,考虑了集成计算的复杂性。

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