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Doppler frequency offset estimation and compensation in OFDM aeronautical communication systems in the presence of narrow-band interference

机译:存在窄带干扰的OFDM航空通信系统中的多普勒频偏估计和补偿

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A two-path model, where each path includes a linear Doppler frequency offset, is commonly applied for modeling aeronautical channels under an en-route scenario. In this study, a maximum-likelihood (ML) channel estimation-based channel response differential correlation method is used to estimate a bilinear Doppler frequency offset. Specifically, reference symbols and ML estimation are used to obtain the channel response and to separate the two paths. Then, for each path, the ML frequency offset estimation is performed via a differential correlation operation. In the absence of interference, ordinary least square (LS) channel estimation and ML channel estimation demonstrate similar performance in frequency offset estimation, but the accuracy of LS channel estimation decreases dramatically in the presence of narrow-band interference, whereas ML channel estimation continues to demonstrate good accuracy, even under strong narrow-band interference, indicating high robustness. We also present a frequency offset compensation method for a two-path channel based on obtaining a maximum signal to interference ratio. The performance of the proposed methods for frequency offset estimation and compensation are validated via simulation.
机译:通常采用两路径模型,其中每条路径包括一个线性多普勒频偏,用于在航路情况下对航空通道进行建模。在这项研究中,基于最大似然(ML)信道估计的信道响应差分相关方法用于估计双线性多普勒频偏。具体而言,参考符号和ML估计用于获得信道响应并分离两条路径。然后,对于每个路径,经由微分相关运算来执行ML频率偏移估计。在没有干扰的情况下,普通最小二乘(LS)信道估计和ML信道估计在频率偏移估计中表现出相似的性能,但是在存在窄带干扰的情况下LS信道估计的准确性急剧下降,而ML信道估计继续即使在很强的窄带干扰下也显示出良好的精度,这表明它具有很高的鲁棒性。我们还提出了一种基于获得最大信噪比的用于两径信道的频偏补偿方法。通过仿真验证了所提出的频率偏移估计和补偿方法的性能。

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