计算机科学
电信线路
误码率
通信系统
通信卫星
光通信
带宽(计算)
自由空间光通信
卫星
多普勒效应
实时计算
地球同步轨道
遥感
电子工程
电信
航空航天工程
解码方法
物理
地质学
工程类
天文
作者
Li Mi,Yifeng Hong,Cheng Zeng,Yuejiang Song,Xuping Zhang
标识
DOI:10.1109/jsac.2018.2864419
摘要
With the increasing demand on the data rate of high-definition (HD) remote detection using unmanned aerial vehicles (UAVs), scientists have moved on from the technique of traditional microwave communication to the technique of optical communication. Through transmitting data to a geosynchronous orbit relay satellite at a high data rate, a UAV can release the storage capacity of its hard drive so as to immediately conduct a new round of HD photo shooting. In this case, we construct a theoretical model of a UAV-to-satellite optical communication system. To optimize the system performance, this paper analyzes the Doppler effect, the pointing error effect, and the atmospheric turbulence effect on the communication performance based on a theoretical study and numerical simulations. In terms of the Doppler effect, the extra background noise caused by slightly increasing the optical filter bandwidth at the receiver has a far weaker effect on the communication performance compared with the effects of atmospheric turbulence and pointing error. In terms of the effects of atmospheric turbulence and pointing error, we further analyze the key parameters of both uplink and downlink systems to better understand these effects. The numerical results can provide data references for practical system designs.
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