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The Effect of Power Allocation on Visible Light Communication Using Commercial Phosphor-Converted Led Lamp for Indirect Illumination

机译:功率分配对使用商用磷光转换LED灯间接照明的可见光通信的影响

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Visible light communication (VLC) systems should be designed to provide illumination and wireless data services simultaneously. To achieve this goal at a reasonable cost, the use of Phosphor-Converted (PC) LEDs for indirect illumination should be favored to provide a homogeneous and reliable coverage in the whole service area. Unfortunately, PC-LEDs found in the market so far have not been designed for data transmission; moreover, the response of the other (electro-) optical components of the VLC link are far from ideal. In this paper, we estimate the data rate that is feasible with VLC when indirect illumination is used. For this purpose, the end-to-end response of the VLC link is first modeled using actual measurements of the spectral power distribution of a PC-LED lamp and the ceiling reflectance. Then, different power allocation schemes are studied assuming an optical OFDM waveform. As commercial LEDs have a relatively slow time response, the equivalent VLC channel that results has strong frequency selectivity; therefore, notable data rate gains are achievable when waterfilling power allocation is applied.
机译:可见光通信(VLC)系统应设计为同时提供照明和无线数据服务。为了以合理的成本实现这一目标,应优先使用磷光转换(PC)LED进行间接照明,以在整个服务区域内提供均匀且可靠的覆盖范围。不幸的是,到目前为止,市场上尚未发现PC-LED可以用于数据传输。此外,VLC链路的其他(电)光学组件的响应远非理想。在本文中,我们估计了使用间接照明时VLC可行的数据速率。为此,首先使用PC-LED灯的光谱功率分布和天花板反射率的实际测量结果对VLC链路的端到端响应进行建模。然后,在假设光OFDM波形的情况下研究了不同的功率分配方案。由于商用LED的时间响应相对较慢,因此产生的等效VLC通道具有很强的频率选择性。因此,当应用注水功率分配时,可获得显着的数据速率增益。

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