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Efficient MMSE-SQRD-based MIMO decoder for SEFDM-based 2.4-Gb/s-spectrum-compressed WDM VLC system

机译:用于基于SEFDM的2.4 Gb / s频谱压缩WDM VLC系统的基于MMSE-SQRD的高效MIMO解码器

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摘要

A spectrally efficient frequency division multiplexing (SEFDM) modulation has been proposed to improve system spectral efficiency, particularly for bandwidth-limited visible-light communication (VLC) systems. It employs non-orthogonal subcarriers to achieve bandwidth savings at the expense of serious intercarrier interference (ICI); thus, complicated detectors are required at the receiver to extract signals from the ICI. In this paper, we carry out an analysis of SEFDM modulation and establish a quasi-multiple-input multiple-output (MIMO) model for SEFDM-based systems. Based on this quasi-MIMO system model, for the first time, we propose to use an MMSE-sorted QR decomposition (MMSE-SQRD)-algorithm-based MIMO decoder to efficiently eliminate the ICI in a high-speed SEFDM-based wavelength-division multiplexing (WDM) VLC system. Using the MMSE-SQRD decoder, the WDM VLC system at an aggregate data rate of 2.4 Gb/s is experimentally demonstrated over a 2-m indoor free-space transmission, and up to 20% of bandwidth savings is achieved compared with that of the orthogonal frequency-division multiplexing (OFDM). The results clearly validate the effectiveness of the proposed MMSE-SQRD detector for SEFDM-based spectrum-compressed VLC system.
机译:已经提出了一种频谱有效的频分复用(SEFDM)调制来提高系统频谱效率,特别是对于带宽受限的可见光通信(VLC)系统。它采用非正交子载波来节省带宽,但以严重的载波间干扰(ICI)为代价;因此,在接收机处需要复杂的检测器来从ICI提取信号。在本文中,我们对SEFDM调制进行了分析,并为基于SEFDM的系统建立了准多输入多输出(MIMO)模型。基于这种准MIMO系统模型,我们首次建议使用基于MMSE排序QR分解(MMSE-SQRD)-算法的MIMO解码器,以有效消除基于高速SEFDM的波长中的ICI。时分复用(WDM)VLC系统。使用MMSE-SQRD解码器,在2 m室内自由空间传输上通过实验证明了WDM VLC系统的总数据速率为2.4 Gb / s,与之相比,它最多可节省20%的带宽。正交频分复用(OFDM)。结果清楚地验证了所提出的MMSE-SQRD检测器对于基于SEFDM的频谱压缩VLC系统的有效性。

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