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Frequency Estimation in OFDM Direct-Conversion Receivers Using a Repeated Preamble

机译:使用重复前导码的OFDM直接转换接收机中的频率估计

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摘要

This paper investigates the problem of carrier frequency offset (CFO) recovery in an OFDM receiver affected by frequency-selective in-phase/quadrature (I/Q) imbalances. The analysis is based on maximum-likelihood (ML) methods and relies on the transmission of a training preamble with a repetitive structure in the time domain. After assessing the accuracy of the conventional ML (CML) scheme in a scenario characterized by I/Q impairments, we review the joint ML (JML) estimator of all unknown parameters and evaluate its theoretical performance. In order to improve the estimation accuracy, we also present a novel CFO recovery method that exploits some side-information about the signal-to-interference ratio. It turns out that both CML and JML can be derived from this scheme by properly adjusting the value of a design parameter. The accuracy of the investigated methods are compared with the relevant Cramer–Rao bound. Our results can be used to check whether conventional CFO recovery algorithms can work properly or not in the presence of I/Q imbalances and also to evaluate the potential gain attainable by more sophisticated schemes.
机译:本文研究了受频率选择同相/正交(I / Q)不平衡影响的OFDM接收机中的载波频率偏移(CFO)恢复问题。该分析基于最大似然(ML)方法,并依赖于时域中具有重复结构的训练前导的传输。在以I / Q损伤为特征的情况下评估常规ML(CML)方案的准确性之后,我们将审查所有未知参数的联合ML(JML)估计量,并评估其理论性能。为了提高估计精度,我们还提出了一种新颖的CFO恢复方法,该方法利用了有关信噪比的一些侧面信息。事实证明,通过适当地调整设计参数的值,CML和JML都可以从此方案派生。将研究方法的准确性与相关的Cramer-Rao界限进行比较。我们的结果可用于检查常规CFO恢复算法在存在I / Q不平衡的情况下是否可以正常工作,还可以评估通过更复杂的方案可获得的潜在收益。

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