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首页> 外文期刊>IEEE transactions on wireless communications >Interpolation-Based Multi-Mode Precoding for MIMO-OFDM Systems with Limited Feedback
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Interpolation-Based Multi-Mode Precoding for MIMO-OFDM Systems with Limited Feedback

机译:有限反馈的基于插值的MIMO-OFDM系统多模式预编码

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Spatial multiplexing with multi-mode precoding provides a means to achieve both high capacity and high reliability in multiple-input multiple-output orthogonal frequency-division multiplexing (MIMO-OFDM) systems. Multi-mode precoding uses linear transmit precoding that adapts the number of spatial multiplexing data streams or modes, according to the transmit channel state information (CSI). As such, it typically requires complete knowledge of the multi-mode precoding matrices for each subcarrier at the transmitter. In practical scenarios where the CSI is acquired at the receiver and fed back to the transmitter through a low-rate feedback link, this requirement may entail a prohibitive feedback overhead. In this paper, we propose to reduce the feedback requirement by combining codebook-based precoder quantization, to efficiently quantize and represent the optimal precoder on each subcarrier, and multi-mode precoder frequency down-sampling and interpolation, to efficiently reconstruct the precoding matrices on all subcarriers based on the feedback of the indexes of the quantized precoders only on a fraction of the subcarriers. To enable this efficient interpolation-based quantized multimode precoding solution, we introduce (1) a novel precoder codebook design that lends itself to precoder interpolation, across subcarriers, followed by mode selection, (2) a new precoder interpolator and, finally, (3) a clustered mode selection approach that significantly reduces the feedback overhead related to the mode information on each subcarrier. Monte-Carlo bit-error rate (BER) performance simulations demonstrate the effectiveness of the proposed quantized multi-mode precoding solution, at reasonable feedback overhead
机译:具有多模式预编码的空间复用提供了一种在多输入多输出正交频分复用(MIMO-OFDM)系统中实现高容量和高可靠性的手段。多模式预编码使用线性传输预编码,该线性传输预编码根据传输信道状态信息(CSI)调整空间复用数据流或模式的数量。这样,通常需要对发射机处的每个子载波的多模式预编码矩阵有完整的了解。在实际情况下,CSI是在接收机处获取并通过低速率反馈链路反馈给发射机的,这种要求可能会导致反馈开销过大。在本文中,我们建议通过结合基于码本的预编码器量化,有效地量化和表示每个子载波上的最佳预编码器,以及多模式预编码器频率下采样和内插,以有效地重构预编码矩阵,来减少反馈需求。所有子载波仅基于一部分子载波上基于量化预编码器的索引的反馈。为了实现这种有效的基于插值的量化多模预编码解决方案,我们引入(1)一种新颖的预编码器代码本设计,使其能够跨子载波进行预编码器插值,然后进行模式选择;(2)一种新的预编码器插值器,最后,(3 )集群模式选择方法,可显着减少与每个子载波上的模式信息有关的反馈开销。蒙特卡洛误码率(BER)性能仿真证明了在合理的反馈开销下所提出的量化多模式预编码解决方案的有效性

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