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A Novel Subblock-Based Frequency-Domain Equalizer over Doubly-Selective Channels

机译:双选择通道上基于子块的新型频域均衡器

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A novel frequency-domain equalizer (FDE) is proposed for single-carrier block transmission over a doubly-selective channel. The proposed FDE partitions a received block into multiple subblocks in order to reduce the effect of the time variation of the channel. The nonuniformity in the error statistics of a subblock-based FDE is analyzed, when a one-tap minimum mean-squared error (MMSE) equalizer is employed. The nonuniformity is exploited to remove the drawback of subblock processing so that the performance of a subblock-based FDE is significantly improved. Numerical results show that the proposed FDE has much better performance than other known subblock-based FDEs. Furthermore, it has robust performance over high Doppler environments.
机译:提出了一种新颖的频域均衡器(FDE),用于双选择信道上的单载波块传输。所提出的FDE将接收到的块划分为多个子块,以便减小信道的时间变化的影响。当采用一键式最小均方误差(MMSE)均衡器时,将分析基于子块的FDE的误差统计中的不均匀性。利用非均匀性消除了子块处理的弊端,从而显着提高了基于子块的FDE的性能。数值结果表明,提出的FDE具有比其他已知的基于子块的FDE更好的性能。此外,它在高多普勒环境中具有强大的性能。

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