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Lab Implementation of 10 Gbps/channel Optical Transmitter Diversity Scheme for Geostationary Satellite Feeder Links

机译:对地静止卫星馈线链路的10 Gbps /通道光发射机分集方案的实验室实现

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Free-space optical (FSO) communications is an attractive alternative to microwave technology in geostationary (GEO) communication satellite feeder link applications, due to the possibility of transmitting information with high data rate, small antenna size, secure communication, and no spectrum licensing requirements. However, optical links through the atmosphere suffer from scintillation effects caused by index of refraction turbulence of the air. It aggravates stable signal detection in the uplink scenario. The benefits of transmitter diversity to mitigate the fading effects in the uplink GEO feeder link are verified by the recently conducted ArtemEx measurement campaign using unmodulated optical beams. In this paper, the lab implementation of the transmitter diversity technique using a 10Gbps data signal and using measured fading vectors from the ArtemEx campaign is presented.
机译:自由空间光学(FSO)通信是在地球静止(GEO)通信卫星进料器链接应用中的微波技术有吸引力的替代品,因为有可能通过以高数据速率,小天线尺寸,安全通信和无频谱许可要求传输信息。然而,通过大气的光学链接患有由空气折射率湍流的指数引起的闪烁效果。它加剧了上行场景中的稳定信号检测。通过最近进行的Artemex测量运动使用未调制的光束,通过最近进行的Artemex测量活动验证发射器多样性以减轻衰落效果的益处。本文介绍了使用10Gbps数据信号的发射机分集技术的实验室实现,并使用来自Artemex广告系列的测量衰落向量。

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