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Channel estimation in OFDM systems based on comb-type pilot arrangement over doubly-selective channels

机译:基于双选择信道上梳状导频排列的OFDM系统中的信道估计

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The time and frequency selectivity in doubly-selective channels corrupt the orthogonality between different subcarriers in an orthogonal frequency-division multiplexing(OFDM) symbol and induce significant inter carrier interference(ICI). To mitigate this effect, many channel estimation and equalization based ICI mitigation schemes had been proposed. However, most of them are based on pilot pattern different from comb-type arrangement, therefore not applicable for many widely applied standards of which pilot tones are equispacedly spread in each symbol, such as DVB-T. For these systems, we resort to an two-stage estimation schemes to obtain accurate channel impulse response. In this paper, three fine estimation schemes are proposed and compared. Simulation results indicate that our proposed schemes can substantially reduce the mean squared error (MSE) of channel estimation in doubly-selective channels.
机译:双选信道中的时间和频率选择性破坏了正交频分复用(OFDM)符号中不同子载波之间的正交性,并引起了显着的载波间干扰(ICI)。为了减轻这种影响,已经提出了许多基于信道估计和均衡的ICI缓解方案。然而,它们中的大多数基于不同于梳型布置的导频图案,因此不适用于许多广泛应用的标准,这些标准的导频音在每个符号中等距分布,例如DVB-T。对于这些系统,我们诉诸于两阶段估计方案以获得准确的信道冲激响应。本文提出并比较了三种精细的估计方案。仿真结果表明,我们提出的方案可以大大降低双选信道中信道估计的均方误差(MSE)。

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