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Efficient OFDM Symbol Timing Estimator Using Power Difference Measurements

机译:使用功率差测量的高效OFDM符号时序估计器

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摘要

This paper presents an efficient blind symbol timing estimation scheme for orthogonal frequency-division multiplexing (OFDM) systems with constant modulus constellation. The proposed technique is designed to estimate symbol timing offsets by minimizing the power difference between subcarriers with similar indices over two consecutive OFDM symbols based on the assumption that the channel slowly changes over time. The proposed power difference estimator (PDE) is totally blind because it requires no prior information about the channel or the transmitted data. Monte Carlo simulation is used to assess the PDE performance in terms of the probability of correct timing estimate $P_{rm lock-in}$. Moreover, we propose a new performance metric denoted as the deviation from safe region (DSR). Simulation results have demonstrated that the PDE performs well in severe frequency-selective fading channels and outperforms the other considered estimators. The complexity of the PDE can be significantly reduced by incorporating a low-cost estimator to provide initial coarse timing information. The proposed PDE is realized using feedforward and early-late gate (ELG) configurations. The new PDE-ELG does not suffer from the self-noise problem inherent in other ELG estimators reported in the literature.
机译:本文提出了一种有效的盲符号定时估计方案,该方案用于具有恒定模数星座的正交频分复用(OFDM)系统。基于信道随时间缓慢变化的假设,所提出的技术旨在通过最小化两个连续OFDM符号上具有相似索引的子载波之间的功率差异来估计符号时序偏移。提出的功率差估计器(PDE)完全是盲目的,因为它不需要有关信道或传输数据的先验信息。蒙特卡洛模拟用于根据正确的时序估计$ P_ {rm锁定} $的概率来评估PDE性能。此外,我们提出了一种新的性能指标,称为与安全区域的偏差(DSR)。仿真结果表明,PDE在严重的频率选择性衰落信道中表现良好,并且优于其他考虑的估计器。 PDE的复杂度可以通过合并低成本的估算器来提供初始的粗略时序信息,从而大大降低。拟议的PDE是使用前馈和早期后期(ELG)配置实现的。新的PDE-ELG不受文献报道的其他ELG估计器固有的自噪声问题的困扰。

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