多波束自由空间光学系统在热带阴雨天气下的性能评价

S. A. Al-Gailani, N. Shah, A. Salem, N. A. Algeelani, Mohammed A. Bantahar
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引用次数: 1

摘要

自由空间光学(FSO)有可能取代光纤作为最后一英里问题的解决方案。与光纤等其他通信系统相比,FSO因其维护成本低、部署时间短而受到青睐。大气衰减对于传统单波束系统的fso来说是一个问题,特别是在大雨的时候,特别是在像马来西亚这样的热带地区。因此,多波束FSO收发系统已成为解决这一问题的一种流行方法。本研究的目的是比较标准的单波束FSO系统与建议的多波束FSO系统。在误码率(BER)为10-9时,对接收光功率、信道距离和几何损耗进行了比较。降雨强度数据是在六个月内收集的。为了评估这两个系统的性能,根据这些数据计算了平均降雨衰减,并暴露在单波束和多波束FSO系统中。发现多波束FSO方法可以提高系统的性能。结果表明,与信道距离仅为830 m的单波束FSO系统相比,使用多达四个波束的FSO系统提高了接收功率的质量,并将信道距离增加到1150 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of Multiple-Beam Free Space Optics in Tropical Rainy Weather
Free space optics (FSO) has the potential to replace optical fiber as a solution for the last mile problem. FSO is favored because of its cheap maintenance costs and quick deployment time as compared to other communication system such as fiber optics. Atmospheric attenuation is a problem for FSOs with classic single beam systems, especially when it rains heavily specially in tropical region like Malaysia. As a result, a multibeam FSO transceiver system has become popular as a solution to this problem. The purpose of this study is to compare the standard single beam FSO system with the suggested multibeam FSO system. At a bit error rate (BER) of 10-9, the comparison is made in terms of received optical power, channel distance, and geometrical losses. Rain intensity data is gathered over a six-month period. To evaluate the performance of both systems, the average rain attenuation is calculated from this data and exposed to single beam and multibeam FSO systems. The multibeam FSO approach was found to increase the system's performance. The results show that employing up to four beams improves the quality of received power and increases the channel distance to 1150 m when compared to a single beam FSO system with a channel distance of only 830 m.
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