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Optical links sizing for broadband geostationary satellite feeder link

机译:宽带对地静止卫星馈线链路的光链路大小

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In this paper, optical uplink and downlink are studied in order to ensure the feeder link of the next generation of broadband geostationary satellite with capacity around 1Tbps. For such capacity, optical links are commonly based on pre-amplified optical receiver with Single Mode Fiber (SMF) optical amplifier. Adaptive optic systems are necessary to compensate the distortions embedded by the atmospheric turbulences that decrease the injection efficiency of the downlink and the pointing accuracy of uplink. This paper is focused on the performances achievable with a simple system based on a single fine pointing mechanism. Considering a digital optical feeder link that is transparent with respect to the user segment, a promising capacity per satellite of 300GHz is achieved.
机译:为了确保下一代宽带对地静止卫星的馈线链路具有大约1Tbps的容量,本文进行了光学上行链路和下行链路的研究。对于这样的容量,光链路通常基于具有单模光纤(SMF)光放大器的预放大光接收机。自适应光学系统对于补偿大气湍流所嵌入的失真是必要的,这些失真会降低下行链路的注入效率和上行链路的指向精度。本文的重点是基于基于单个精细定位机制的简单系统可实现的性能。考虑到相对于用户段而言透明的数字光馈线链路,可以实现每颗卫星300GHz的有希望的容量。

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