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A comparative study of optical concentrators for visible light communications

机译:可见光通信用光学聚光器的比较研究

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摘要

Given the imminent radio frequency spectrum crunch, Visible Light Communication (VLC) is being proposed as an alternative wireless technology allowing for scalable connectivity to potentially millions of mobile and Internet-of-Things (IoT) devices. A VLC system uses a photo-detector (PD) receiver that converts the optically modulated light from a light source into a modulated electrical signal. The corresponding receiver electrical bandwidth is typically inversely proportional to the PD active area. Consequently, to construct a high-speed VLC link, the PD active area is often substantially reduced and an optical concentrator is used to enhance the receiver collection area. However, to achieve high concentrating factor, the link field-of-view (FOV) needs to be narrow due to the étendue conservation in linear passive optical systems. This paper studies a Fluorescent Concentrator (FC) that breaks this étendue conservation. The FC is not only based on reflective and refractive principles but also makes use of fluorescence process. A comparison between the FC and conventional optical concentrators, namely Compound Parabolic Concentrator (CPC) is also investigated. The trade-off between received signal strength and incoming link angle is demonstrated over 60° coverage. Experimental results show that performance degradation as the link angle increases using FC-based receivers is significantly lower than for conventional CPC.
机译:鉴于迫在眉睫的射频频谱缩轮,正在提出可见光通信(VLC)作为替代无线技术,允许可扩展的连接到潜在数百万的移动和互联网(物联网)设备。 VLC系统使用光检测器(PD)接收器,其将光学调制光从光源转换为调制电信号。相应的接收器电带宽通常与PD活动区域成反比。因此,为了构造高速VLC链路,PD有源区域通常基本上减小,并且光学聚光器用于增强接收器收集区域。然而,为了实现高浓缩因子,由于线性无源光学系统中的étendue守恒,链接视野(FOV)需要缩小。本文研究了破坏这种étendue守恒的荧光浓缩器(Fc)。 FC不仅基于反射和折射原理,而且使用荧光过程。还研究了Fc和常规光学聚光器之间的比较,即复合抛物型浓缩器(CPC)。接收信号强度和输入链路角之间的折衷方率超过60°覆盖范围。实验结果表明,随着传统CPC的基于FC的接收器,随着链路角度增加的性能劣化显着低于传统的CPC。

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