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Time reversal time-domain synchronisation orthogonal frequency division multiplexing over multipath fading channels with significant tap delays

机译:具有明显抽头延迟的多径衰落信道上的时间反转时域同步正交频分复用

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Time-reversed orthogonal frequency division multiplexing (TR-OFDM) has recently received attention as a promising spectral efficient scheme for single-input multiple-output communications over time-dispersive fading channels. For TR-OFDM, passive time reversal processing is used as a simple means for channel time dispersion reduction. In particular, pseudorandom noise (PN)-sequence padding time-domain synchronisation OFDM (TDS-OFDM) transmission scheme has been reported as an appealing alternative to the traditional cyclic prefix (CP) OFDM technology as it can provide significant improvement in the spectrum efficiency. In this study, a new correlation based coder for inter-block and inter-symbol interference removing in time-reversed TDS-OFDM, which is denoted TR-TDS-OFDM briefly is proposed. Such a coder is, then, tested for multipath channels with significant tap delays. A Zadoffa??Chu sequence with perfect autocorrelation property is adopted as a training sequence (TS) for a TDS-OFDM system. Simulation results show that, by using TR-TDS-OFDM with correlation-based coder, a TS with length shorter than channel order can be used without introducing notable inter-block interference. The other merits of the proposed design are also supported by both theoretical analysis and numerical simulations.
机译:时间反向正交频分复用(TR-OFDM)作为一种有希望的频谱有效方案,最近在时间分散衰落信道上实现了单输入多输出通信,最近受到了关注。对于TR-OFDM,无源时间反转处理被用作减少信道时间色散的简单方法。特别是,伪随机噪声(PN)序列填充时域同步OFDM(TDS-OFDM)传输方案已被报告作为传统循环前缀(CP)OFDM技术的一种有吸引力的替代方案,因为它可以显着提高频谱效率。在这项研究中,提出了一种新的基于相关性的编码器,用于在时间反向的TDS-OFDM中消除块间和符号间干扰,简称为TR-TDS-OFDM。然后,针对具有明显抽头延迟的多路径信道测试这种编码器。具有完善的自相关特性的ZadoffaΔChu序列被用作TDS-OFDM系统的训练序列(TS)。仿真结果表明,通过将TR-TDS-OFDM与基于相关的编码器配合使用,可以使用长度短于信道顺序的TS,而不会引入明显的块间干扰。理论分析和数值模拟都支持所提出设计的其他优点。

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