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Exploiting hopping pilots for parametric channel estimation in OFDM systems

机译:在OFDM系统中利用跳频导频进行参数信道估计

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摘要

In this letter, we investigate the effect of hopping pilots on the parametric channel estimation in orthogonal frequency-division multiplexing (OFDM) systems. Channel estimation algorithms based on parametric channel modeling require the multipath delays to be estimated at the receiver. The use of a fixed pilot pattern leads to longer training overhead in multipath delay estimation for slow fading channels. However, if hopping pilot patterns are available, then we show that the normalized mean-squared error (NMSE) convergence rate of the channel estimates can be significantly improved. We also show that hopping pilot patterns in OFDM systems effectively allow the eigenvectors of the delay subspace (of the autocorrelation matrix) to be estimated faster. Simulation results are provided to show the faster convergence rate of the NMSE for the hopping pilot pattern over the fixed pilot pattern.
机译:在这封信中,我们研究了跳频导频对正交频分复用(OFDM)系统中参数信道估计的影响。基于参数信道建模的信道估计算法要求在接收机处估计多径延迟。固定导频模式的使用会导致针对慢衰落信道的多径延迟估计中的训练开销更长。但是,如果可以使用跳频导频模式,则表明信道估计的归一化均方误差(NMSE)收敛速率可以得到显着改善。我们还表明,OFDM系统中的跳频导频模式有效地允许了(自相关矩阵的)延迟子空间的特征向量被更快地估计。提供的仿真结果显示了跳变导频模式在固定导频模式上的NMSE收敛速度更快。

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