Dong Junming, Zhang Yanyu, Zhu Yijun
Appl Opt. 2017 Aug 10;56(23):6587-6595. doi: 10.1364/AO.56.006587.
Visible light communications (VLC) using multi-color light-emitting diodes (LEDs) can support simultaneous high-speed data rate and high-quality lighting. However, since the radiation spectrum of LEDs has a limited width, spectral overlapping will result in multi-color cross talk even when optical filters are applied at the receivers. Moreover, since LEDs are used for illumination and wireless data transmission in the meantime, both lighting quality and communication performance must be considered in VLC systems. In this paper, we consider a multiple-input-multiple-output with low-complexity linear minimum mean square error detection to collaboratively manage the cross talk by maximizing the minimum signal-to-interference-plus-noise ratio (SINR) subject to chromaticity constraint based on MacAdam ellipse, luminance constraint, and signal range constraint. A sub-optimal convex relaxation is proposed to attack the SINR maximization problem. Extensive simulations indicate that the proposed method provides very efficient solutions and outperforms the conventional wave-division multiplexing scheme under the illumination constraint.
使用多色发光二极管(LED)的可见光通信(VLC)能够同时支持高速数据速率和高质量照明。然而,由于LED的辐射光谱宽度有限,即使在接收器处应用光学滤波器,光谱重叠也会导致多色串扰。此外,由于LED同时用于照明和无线数据传输,因此在VLC系统中必须同时考虑照明质量和通信性能。在本文中,我们考虑采用具有低复杂度线性最小均方误差检测的多输入多输出,通过在基于麦克亚当椭圆的色度约束、亮度约束和信号范围约束下最大化最小信干噪比(SINR)来协同管理串扰。提出了一种次优凸松弛方法来解决SINR最大化问题。大量仿真表明,该方法提供了非常有效的解决方案,并且在照明约束下优于传统的波分复用方案。