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Magnitude and Wrap-Phase OFDM for MIMO Visible Light Communication Systems

机译:用于MIMO可见光通信系统的幅度和包装阶段OFDM

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摘要

Generalized light emitting diode (LED) index modulation (GLIM) has been proposed as an effective multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) scheme for visible light communications (VLC) systems. In this letter, we propose a magnitude and wrap-phase OFDM (MW-OFDM) scheme for MIMO VLC systems. The proposed MW-OFDM system relies on the conversion of complex signals into polar form with the magnitudes and wrap-phases to decrease the restriction on the number of LEDs compared to the conventional GLIM-OFDM. Furthermore, maximum likelihood and best linear unbiased estimators of the proposed scheme are derived. The proposed MW-OFDM scheme improves the average bit error rate and provides a significant reduction in the decoding complexity, compared to the GLIM-OFDM. Moreover, a half number of LEDs are required for the proposed scheme to deliver the same spectral efficiency in a comparison with the GLIM-OFDM. Numerical results are presented over MIMO VLC channels to elaborate the superiority of our proposed scheme.
机译:已经提出了广义发光二极管(LED)索引调制(GLIM)作为可见光通信(VLC)系统的有效多输入多输出(MIMO)正交频分复用(OFDM)方案。在这封信中,我们为MIMO VLC系统提出了一种幅度和包阶段OFDM(MW-OFDM)方案。所提出的MW-OFDM系统依赖于复杂信号的转换成具有幅度形式的尺寸和包装相,以减少与传统的粘合剂 - OFDM相比的LED数量的限制。此外,推导出最大的似然和最佳线性无偏见的估计。与GLIM-OFDM相比,所提出的MW-OFDM方案提高了平均误码率并提供了解码复杂性的显着降低。此外,所提出的方案需要半数量的LED,以便与GLIM-OFDM的比较提供相同的光谱效率。在MIMO VLC通道上介绍了数值结果,以详细说明我们所提出的方案的优越性。

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