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Satellite link margin and availability issues

机译:卫星链路余量和可用性问题

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Satellite link margin and availability issues are addressed. Typical sources of disputes in satellite link design results generated by different satellite link engineers are described and solutions to resolve the disputes are proposed. The solutions include provision of accurate and simplified methods with mathematical derivation support to estimate the availabilities of satellite links due to rainfall for a specified transponder power utilization. Derivations and descriptions of the link availability methods are provided for one-way (simplex) link and two-way (duplex) link, with or without the use of uplink power control at the transmit earth station, and for the general case where uplink and downlink rain are uncorrelated (e.g., transmit and receive earth stations are very far from each other) as well as the specific case where the rains are completely correlated (e.g., transmit and receive earth stations are the same or very close each other). The accurate methods are based on the use of discrete probability density functions of uplink and downlink rain attenuations which are readily available from any existing rain attenuation models. The simplified methods are provided to further simplify the computation involved. Comparison between the methods is also performed
机译:解决了卫星链路的余量和可用性问题。描述了由不同卫星链路工程师产生的卫星链路设计结果中的典型纠纷源,并提出了解决纠纷的解决方案。解决方案包括提供精确和简化的方法,并提供数学推导支持,以估算特定转发器功率使用情况下由于降雨造成的卫星链路的可用性。对于单向(单工)链路和双向(双工)链路,无论是否在发射地球站使用上行链路功率控制,以及在通常情况下,上行链路和下行链路都提供了链路可用性方法的推导和描述。下行链路的雨是不相关的(例如,发射和接收地球站彼此相距很远),以及特定情况下的雨是完全相关的(例如,发射和接收的地球站彼此相同或彼此很近)。准确的方法基于对上行链路和下行链路降雨衰减的离散概率密度函数的使用,这些函数可以从任何现有的降雨衰减模型中轻松获得。提供简化的方法以进一步简化所涉及的计算。还进行了方法之间的比较

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