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Novel Transmit Diversity Scheme for TDS-OFDM System With Frequency-Shift m-Sequence Padding

机译:具有频移m序列填充的TDS-OFDM系统的新型发射分集方案

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摘要

This contribution proposes a design method for training sequence (TS) defined as frequency-shift m-sequence (FSMS) and a novel transmit diversity scheme with FSMS padding as guard interval (GI) for the further evolution of time domain synchronous orthogonal frequency domain multiplexing (TDS-OFDM) systems. The good auto-correlation characteristic of FSMS can facilitate synchronization and channel estimation at the receiver. Due to the cross-correlation characteristics of FSMSs, the accuracy of channel estimation is affected by the mutual interference among the transmit antennas. To further improve the accuracy of channel estimation, the channel impulse response (CIR) should be estimated in an iterative manner to suppress the effects of the mutual interference and additive white Gaussian noise. Compared with the transmit diversity schemes based on the space-frequency coded TS and space-time coded TS for TDS-OFDM system, the proposed transmit diversity scheme with FSMS padding can provide diversity gain and superior system performance over time-varying and/or frequency-selective propagation conditions.
机译:该文稿提出了一种将训练序列(TS)定义为频移m序列(FSMS)的设计方法,并提出了一种以FSMS填充为保护间隔(GI)的新型发射分集方案,以进一步发展时域同步正交频域复用(TDS-OFDM)系统。 FSMS的良好自相关特性可以促进接收机的同步和信道估计。由于FSMS的互相关特性,信道估计的准确性受到发射天线之间相互干扰的影响。为了进一步提高信道估计的准确性,应以迭代方式估计信道脉冲响应(CIR),以抑制相互干扰和加性高斯白噪声的影响。与用于TDS-OFDM系统的基于空频编码TS和空时编码TS的发射分集方案相比,所提出的带有FSMS填充的发射分集方案可以在时变和/或频率上提供分集增益和出色的系统性能。 -选择性繁殖条件。

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