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SVD-VLC: A novel capacity maximizing VLC MIMO system architecture under illumination constraints

机译:SVD-VLC:在照明约束下最大化VLC MIMO系统架构的新型容量

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Multiple-input multiple-output (MIMO) systems using multiple light emitting diode (LED) sources and photodiode (PD) detectors are attractive for visible light communication (VLC) as they offer a capacity gain proportional to the number of parallel single-input single-output (SISO) channels. MIMO VLC systems exploit the high signal-to-noise ratio (SNR) of a SISO channel offered due to typical illumination requirements to overcome the capacity constraints due to limited modulation bandwidth of LEDs. In this work, a modified singular value decomposition VLC (SVD-VLC) MIMO system is proposed. This system maximizes the data rate while maintaining the target illumination and allowing the channel matrix to vary in order to support mobility in a practical indoor VLC deployment. The upper bound on capacity of the proposed SVD-VLC MIMO system is calculated assuming an imaging receiver. The relationship between the proposed system performance and system parameters total power constraint, lens aperture and random receiver locations are described.
机译:使用多个发光二极管(LED)源和光电二极管(PD)检测器的多输入多输出(MIMO)系统对于可见光通信(VLC)具有吸引力,因为它们提供的容量增益与并行单输入单路数量成正比-输出(SISO)通道。 MIMO VLC系统利用由于典型的照明要求而提供的SISO通道的高信噪比(SNR),来克服由于LED调制带宽有限而引起的容量限制。在这项工作中,提出了一种改进的奇异值分解VLC(SVD-VLC)MIMO系统。该系统可在保持目标照明度的同时最大化数据速率,并允许通道矩阵发生变化,以支持实际室内VLC部署中的移动性。假设成像接收器,则计算所提出的SVD-VLC MIMO系统的容量上限。描述了建议的系统性能与系统参数总功率限制,镜头光圈和随机接收器位置之间的关系。

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