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Robust LS channel estimation with phase rotation for single frequency network in OFDM

机译:OFDM中单频网络具有相位旋转的稳健LS信道估计

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A channel estimation technique has been proposed with the least square (LS) based on comb-type pilots for orthogonal frequency division multiplexing (OFDM). An interpolator should be used to obtain the channel information between adjacent pilots for a comb-type pattern. However, an interpolation method causes additional errors due to the interpolation properties of not detecting long delayed paths and generating fictitious paths, OFDM has its strength in realistic possibility of constructing the single frequency network (SFN). However, synchronization and channel estimation errors are revealed by multi-path fading with long delayed paths in SFN channels. We propose a robust channel estimator overcoming the adverse effects of long delayed signals in SFNs. A new channel estimator is proposed with the interpolated LS by applying phase shifted samples in the frequency-domain. In particular, the proposed channel estimator is more robust to the single frequency network (SFN) whenever the delay spread is less than the cyclic prefix length. For a Rayleigh channel, the proposed estimator has an almost 3 dB gain comparing to conventional estimator
机译:已经提出了基于梳形导频的具有最小二乘(LS)的信道估计技术,用于正交频分复用(OFDM)。应该使用内插器来获得梳型图案的相邻导频之间的信道信息。然而,由于不检测长的延迟路径并生成虚拟路径的插值特性,插值方法引起附加误差,OFDM在构造单频网络(SFN)的现实可能性中具有优势。但是,SFN通道中具有长延迟路径的多路径衰落揭示了同步和信道估计错误。我们提出了一种强大的信道估计器,可以克服SFN中长时间延迟的信号的不利影响。通过在频域中应用相移采样,提出了一种具有内插LS的新信道估计器。特别地,每当延迟扩展小于循环前缀长度时,所提出的信道估计器对单频网络(SFN)更加鲁棒。对于瑞利信道,与传统估计器相比,建议的估计器具有近3 dB的增益

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