Optical wireless communication (OWC) covering an ultra-wide range of unlicensed spectrum has emerged as an extent efficient solution to mitigate conventional RF spectrum scarcity ranging from communication distances from nm to several kilometers. Free space optical (FSO) systems operating near IR (NIR) band in OWC links has received substantial attention for enormous data transmission between fixed transceivers covering few kilometers path distance due to high optical bandwidth and higher bit rate as well. Despite the potential benefits of FSO technology, its widespread link reliability suffers especially in the long-range deployment due to atmospheric turbulence, cloud induced fading, some other environmental factors such as fog, aerosol, temperature variations, storms, heavy rain, cloud, pointing error, and scintillation. FSO has the potential to offloading massive traffic demands from RF networks, consequently the combined application of FSO/RF and radio over FSO (RoFSO) systems is regarded as an excellent solution to support 5G and beyond for improving the limitations of an individual system. This survey presents the overview of several key technologies and implications of state-of-the-art criteria in terms of spectrum reuse, classification, architecture and applications are described for understanding FSO. This paper provides principle, significance, demonstration, and recent technological development of FSO technology among different appealing optical wireless technologies. The opportunities in the near future, the potential challenges that need to be addressed to realize the successful deployment of FSO schemes are outlined.
翻译:尽管FSO技术可能带来好处,但其广泛连接的可靠性尤其由于大气动荡、云层诱发消退、其他一些环境因素,如雾、气溶胶、温度变化、风暴、大雨、云、指错和闪烁等,成为减轻传统RF频带附近运行的OWC链接自由空间光学(FSO)系统在光宽度高、比特率高的几公里路长距离线的固定收发器之间大量数据传输的极大关注。尽管FSO技术具有潜在好处,但其广泛连接的可靠性在长距离部署中尤其受到影响,这些因素包括:大气动荡、云层诱发散、烟雾、暴雨、云、指错和闪烁等一些其他环境因素。FSO具有潜力,因此FSO/RF和无线电对FSO系统的综合应用被认为是支持5G和以后改进单个系统限制的极好的解决办法。在频谱再利用、分类、建筑和应用方面,对于FSO的成功部署、未来技术的预测性价值、对FSO的预测性、对FSO的预测性技术的成功认识提供了各种机会。