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Decimal frequency offset estimation in COFDM wireless communications

机译:COFDM无线通信中的十进制频偏估计

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摘要

Timing jitter, frequency offset, carrier phase jitter and sampling clock frequency offset are the main synchronization errors encountered by OFDM systems. As many literature studies have proved, OFDM systems are very sensitive to frequency errors. In this paper, an improved method for decimal frequency offset estimation in time domain is proposed. In addition, lots of simulations have proved that when the decimal frequency offset in data streams approaches 0.5 of the subcarrier spacing, a wrong estimated frequency offset with inverse polarity will be presented, and therefore, a novel adjusting model to deal with this problem is also proposed in this paper. Simulation results show that the mean square error (MSE) can be significantly improved by over three orders of magnitude at high SNR with the proposed method compared with the conventional method. The corresponding field programmable gate array (FPGA) circuit through test in HDTV prototype in Team of Engineering Expert Group (TEEG) proves its feasibility and availability.
机译:定时抖动,频率偏移,载波相位抖动和采样时钟频率偏移是OFDM系统遇到的主要同步误差。正如许多文献研究证明的那样,OFDM系统对频率误差非常敏感。提出了一种时域十进制频偏估计的改进方法。另外,大量的仿真证明,当数据流中的十进制频率偏移接近子载波间隔的0.5时,会出现错误的极性相反的估计频率偏移,因此,也提出了一种新颖的调整模型来处理该问题。本文提出。仿真结果表明,与传统方法相比,该方法在高信噪比下可以将均方误差(MSE)提高三个数量级以上。通过工程专家组(TEEG)的HDTV原型测试,相应的现场可编程门阵列(FPGA)电路证明了其可行性和可用性。

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