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Underwater acoustic channel estimation for pilot based OFDM

机译:基于导频的OFDM的水下声信道估计

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摘要

Underwater acoustic channel is the most challenging channel in the world due to its time varying and frequency-selective characters and these characters make channel estimation a compulsory task for coherent orthogonal frequency division multiplexing (OFDM) underwater communication. Channel frequency response can be estimated by pilots that are already known to the receiver. Bit error rate (BER) performance can vary a lot according to different type of pilot pattern. Three kinds of pilot (Block, Comb and Scatter) are analyzed and each of them is proved to work well in some certain underwater environment. Underwater channel is demonstrated to be a comb filter. With channel estimation, stopband and passband of the experiment channel are found and analyzed. Channel estimation error is more likely to occur in stopband than in passband, especially when the channel coherence bandwidth is small. Interchannel interference (ICI) can cause large estimation error by increase its noise level. An improved transform domain filter can reduce the estimation SNR significantly.
机译:由于其时间变化和频率选择性字符,并且这些字符使信道估计是一种强制性任务,这是一种用于相干正交频分复用(OFDM)水下通信的强制任务,是世界上最具挑战性的频道。频道频率响应可以通过接收器已知的导频估计。误码率(BER)性能可以根据不同类型的导频模式而变化很大。分析了三种飞行员(块,梳子和散射),并证明它们中的每一个在某些水下环境中均匀地工作。水下信道被证明是梳子过滤器。利用实验通道的信道估计,停止和通带被发现并分析。信道估计误差更可能发生在停机带上而不是在通带中,尤其是当信道相干带宽较小时。 Interchannel干扰(ICI)可以通过增加其噪声水平来引起大的估计误差。改进的变换域滤波器可以显着降低估计SNR。

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