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用于MIMO-OFDM可见光通信系统的叠加三维64QAM星座设计。

Superposed three-dimensional 64QAM constellation design for MIMO-OFDM visible light communication systems.

作者信息

Guo Xinyue, Chu Tiantian, Xia Jingkai

出版信息

Opt Express. 2023 Oct 23;31(22):35850-35863. doi: 10.1364/OE.502169.

Abstract

Multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) has been widely used to improve data rate in visible-light communication (VLC) systems. However, the high correlation of channels restricts the application of MIMO. A superposed constellation, combined with MIMO, can achieve considerable diversity gain even in highly correlated MIMO channels. In this study, what we believe to be novel superposed three-dimensional 64-quadrature amplitude modulation (3D-64QAM) constellation schemes are proposed for MIMO-OFDM VLC systems. First, a superposed 3D-64QAM constellation scheme using two transmitted light emitting diodes (LEDs) is proposed, where two independent signals with 3D-4QAM and 3D-16QAM modulation formats are superposed to form a 3D-64QAM signal at the receiver. Then, for what we believe is the first time, we expand the superposed constellation solution to three-LED application scenarios, wherein the 3D-64QAM constellation is superposed by three different 3D-4QAM constellations. Both schemes benefit from a higher minimum Euclidean distance of 3D-64QAM constellation, 1.67 times that of traditional two-dimensional (2D) 64QAM constellation. Meanwhile, the equal-power superposition design of transmitted signals reduces the nonlinearity of LEDs and power competition of photodiodes. Moreover, the three-LED scheme further improves the transmitted power without increasing the risk of nonlinear distortion. To improve spectral efficiency and reduce complexity, we also propose a 3D OFDM modulation scheme. The superposed 3D-64QAM schemes are first studied through theoretical analysis and computer simulation. Then, an experimental demonstration is established to investigate the system performance comprehensively. Experimental results prove that the superposed 3D-64QAM constellation schemes achieve a superior bit error rate (BER) performance than the traditional superposed 2D-64QAM constellation scheme. Compared with two-LED scheme, the three-LED scheme not only obtains a lower BER, but also improves the dynamic range of driving peak-to-peak voltage significantly.

摘要

多输入多输出正交频分复用(MIMO-OFDM)已被广泛用于提高可见光通信(VLC)系统中的数据速率。然而,信道的高相关性限制了MIMO的应用。即使在高度相关的MIMO信道中,叠加星座与MIMO相结合也能实现可观的分集增益。在本研究中,我们提出了用于MIMO-OFDM VLC系统的我们认为新颖的叠加三维64正交幅度调制(3D-64QAM)星座方案。首先,提出了一种使用两个发射发光二极管(LED)的叠加3D-64QAM星座方案,其中两个具有3D-4QAM和3D-16QAM调制格式的独立信号在接收器处叠加形成一个3D-64QAM信号。然后,我们首次将叠加星座解决方案扩展到三LED应用场景,其中3D-64QAM星座由三个不同的3D-4QAM星座叠加而成。两种方案都受益于3D-64QAM星座更高的最小欧几里得距离,是传统二维(2D)64QAM星座的1.67倍。同时,发射信号的等功率叠加设计降低了LED的非线性和光电二极管的功率竞争。此外,三LED方案在不增加非线性失真风险的情况下进一步提高了发射功率。为了提高频谱效率并降低复杂度,我们还提出了一种3D OFDM调制方案。首先通过理论分析和计算机仿真研究了叠加3D-64QAM方案。然后,建立了一个实验演示来全面研究系统性能。实验结果证明,叠加3D-64QAM星座方案比传统的叠加2D-64QAM星座方案具有更好的误码率(BER)性能。与双LED方案相比,三LED方案不仅获得了更低的BER,而且显著提高了驱动峰峰值电压的动态范围。

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