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An analysis of bi-directional use of frequencies for satellite communications

机译:卫星通信中频率双向使用的分析

摘要

The bi-directional use of frequencies allocated for space communications has the potential to double the orbit/spectrum capacity available. The technical feasibility of reverse band use (RBU) at C-band (4 GHz uplinks and 6 GHz downlinks) is studied. The analysis identifies the constraints under which both forward and reverse band use satellite systems can share the same frequencies with terrestrial, line of sight transmission systems. The results of the analysis show that RBU satellite systems can be similarly sized to forward band use (FBU) satellite systems. In addition, the orbital separation requirements between RBU and FBU satellite systems are examined. The analysis shows that a carrier to interference ratio of 45 dB can be maintianed between RBU and FBU satellites separated by less than 0.5 deg., and that a carrier to interference ratio of 42 dB can be maintained in the antipodal case. Rain scatter propagation analysis shows that RBU and FBU Earth stations require separation distances fo less than 10 km at a rain rate of 13.5 mm/hr escalating to less than 100 km at a rain rate of 178 mm/hr for Earth station antennas in the 3 to 10 m range.
机译:为空间通信分配的频率的双向使用有可能使可用的轨道/频谱容量增加一倍。研究了C波段(4 GHz上行链路和6 GHz下行链路)的反向频带使用(RBU)的技术可行性。该分析确定了在正向和反向频段使用的卫星系统都可以与地面视线传输系统共享相同频率的限制。分析结果表明,RBU卫星系统的大小可以与前向频带使用(FBU)卫星系统类似。此外,还研究了RBU和FBU卫星系统之间的轨道间隔要求。分析表明,相距小于0.5度的RBU和FBU卫星之间可以保持45 dB的载波干扰比,并且在对映情况下可以保持42 dB的载波干扰比。雨散射传播分析表明,对于3个地球站天线,RBU和FBU地球站要求在13.5 mm / hr的降雨率下小于10 km的间隔距离,在178 mm / hr的降雨率下要小于100 km。到10 m的范围。

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