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Generalized unitary rotation based precoder for super-imposing of synchronization sequences in OFDM

机译:基于通用unit旋转的预编码器,用于OFDM中同步序列的叠加

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This paper proposes a novel algorithm for obtaining an orthogonal frequency division multiplexing (OFDM) signal with a super-imposed synchronization sequence, which is orthogonal to the rest of the signal. It allows to completely eliminate an interference between the super-imposed sequence and the useful signal. The super-imposed sequence does not consume dedicated time and frequency resources and provide additional means for timing and carrier frequency offset estimation and can be used for the channel estimation. The proposed precoder is based on a new class of fast unitary transformations and it is compatible with classic OFDM systems with pilot signal assisted modulation (PSAM) and frequency domain equalization. Moreover, it can be used in conjunction with existing OFDM timing offset and carrier frequency synchronization methods. The impact of frequency domain equalization on the orthogonality between the synchronization sequence and data subcarriers is analyzed. Additionally, the compatibility of the proposed precoder with popular data-aided and decision-directed timing offset estimation algorithms have been verified using Monte Carlo computer simulations.
机译:本文提出了一种新算法,该算法可获取具有叠加的同步序列的正交频分复用(OFDM)信号,该信号与其余信号正交。它可以完全消除叠加序列和有用信号之间的干扰。叠加序列不消耗专用的时间和频率资源,并且提供了用于定时和载波频率偏移估计的附加手段,并且可以用于信道估计。所提出的预编码器基于一类新型的快速unit变换,并且与具有导频信号辅助调制(PSAM)和频域均衡功能的经典OFDM系统兼容。此外,它可以与现有的OFDM定时偏移和载波频率同步方法结合使用。分析了频域均衡对同步序列和数据子载波之间正交性的影响。另外,使用蒙特卡洛计算机仿真已经验证了所提出的预编码器与流行的数据辅助和决策导向的定时偏移估计算法的兼容性。

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