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Space-frequency-Doppler coded OFDM over the time-varying Doppler fading channels

机译:时变多普勒衰落信道上的空频多普勒编码OFDM

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In this paper, space-frequency-Doppler coded OFDM (SFDO-OFDM) scheme over the time-varying Doppler fading channels via the time-frequency duality is proposed. Based on the basis expansion model (BEM) and the time-frequency duality, through the circulant matrix diagonalized processing, the nonlinear time-varying Doppler fading channel is dually converted to the virtual frequency-selective linear channels. With OFDM module, subgrouping the subcarriers in OFDM through the block matrix method and fatherly general complex orthogonal coding (GCOD) on each corresponding block subcarriers, SFDO-OFDM codes for the general multiple input multiple output (MIMO) is thus constructed. And concatenating it with the signal constellation precoding, full maximum diversity gains including the inherent Doppler fading are achieved. Theoretical analysis and corroborating simulation results demonstrate that, comparing with existing Doppler coding alternatives, the proposed scheme can effectively and robustly combat the Doppler fading with high bandwidth efficiency and even lower bit error ratio (BER). (C) 2007 Elsevier GmbH. All rights reserved.
机译:提出了一种时空多普勒衰落信道上时空对偶的空频多普勒编码OFDM(SFDO-OFDM)方案。基于基本扩展模型(BEM)和时频对偶性,通过循环矩阵对角化处理,将非线性时变多普勒衰落信道对偶转换为虚拟频率选择性线性信道。利用OFDM模块,通过块矩阵方法对OFDM中的子载波进行分组,并在每个对应的块子载波上进行父通用复正交编码(GCOD),从而构造了用于通用多输入多输出(MIMO)的SFDO-OFDM码。并将其与信号星座图预编码相结合,可获得包括固有多普勒衰落在内的全部最大分集增益。理论分析和证实的仿真结果表明,与现有的多普勒编码替代方案相比,该方案能够以高带宽效率甚至更低的误码率(BER)有效,强大地抵抗多普勒衰落。 (C)2007 Elsevier GmbH。版权所有。

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