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首页> 外文期刊>IEEE transactions on wireless communications >A consistent OFDM carrier frequency offset estimator based on distinctively spaced pilot tones
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A consistent OFDM carrier frequency offset estimator based on distinctively spaced pilot tones

机译:基于独特间隔的导频音的一致OFDM载波频率偏移估计器

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摘要

A pilot-tone-based maximum likelihood estimator (PBMLE) for carrier frequency offset (CFO) in orthogonal frequency-division multiplexing (OFDM) systems is proposed. To obtain a consistent estimate of the CFO over a frequency-selective fading channel, the proposed method employs a preamble comprising distinctively spaced pilot tones. As a result of this preamble configuration, a large estimation range equal to the bandwidth of the OFDM signal can be achieved. Different from previous ad hoc pilot-tone-based CFO estimators, the PBMLE exploits the relationship between the CFO and the periodogram of the preamble. Analysis shows that the proposed PBMLE is asymptotically unbiased and efficient. To realize this PBMLE in practice, a suboptimal estimator is also introduced, in which a zero-padded fast Fourier transform is invoked and the CFO estimation is split into two phases: coarse and fine estimation. Coarse estimation is obtained through the correlation between the received preamble and its original pattern, whereas fine estimation is obtained by exploiting the magnitude attenuation in the vicinities of those CFO-shifted pilot tones. Both analytical investigations and computer simulations indicate that the accuracy of this simplified suboptimal estimator is proportional to the oversize ratio of zero padding. When the oversize ratio is sufficiently high, the performance of the suboptimal estimator approaches that of the proposed PBMLE.
机译:提出了一种在正交频分复用(OFDM)系统中用于载波频率偏移(CFO)的基于导频音的最大似然估计器(PBMLE)。为了在频率选择衰落信道上获得一致的CFO估计值,所提出的方法采用了包括不同间隔的导频音的前同步码。作为该前同步码配置的结果,可以实现等于OFDM信号的带宽的大的估计范围。与以前的基于临时导频的临时CFO估计器不同,PBMLE利用CFO和前同步码的周期图之间的关系。分析表明,所提出的PBMLE是渐近无偏的且有效的。为了在实践中实现该PBMLE,还引入了次优估计器,其中调用了零填充快速傅里叶变换,并将CFO估计分为两个阶段:粗略估计和精细估计。粗略的估计是通过接收的前同步码及其原始模式之间的相关性获得的,而精细的估计是通过利用那些CFO移位的导频音调附近的幅度衰减来获得的。分析研究和计算机仿真均表明,这种简化的次优估计量的精度与零填充的超大比例成正比。当超大比例足够高时,次优估算器的性能将接近拟议的PBMLE。

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