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Bidirectional RF-modulated fiber optic link for intra-satellite communications

机译:用于卫星内通信的双向RF调制光纤链路

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Abstract: Use of optical carriers to distribute RF and microwave signals can significantly reduce the size and weight of spacecraft communication systems. Optical carriers can accommodate several RF signals per fiber while permitting noise requirements for communications systems to be met. We previously reported the development of a space-qualified fiber-optic intra-satellite link that meets the requirements on single-side-band phase noise for precision RF signals. The radar altimeter radar chirp signals distributed by these links also meet system requirements. This paper reports our progress in designing a fiber-optic link that transmits RF signals in both directions on the same fiber. Tests at 5, 15, and 80 MHz showed that, for radar altimeter system applications onboard spacecraft, the bidirectional link meets the altimeter RF section's requirements on single-side-band phase noise. However, the severe attenuation requires that the modulated signals be amplified, which may increase the noise levels in the receiver section. Further work is needed to optimize the link for phase noise performance and to address power losses.!10
机译:摘要:使用光载波分配RF和微波信号可以显着减小航天器通信系统的尺寸和重量。光学载波可以容纳每根光纤几个RF信号,同时允许满足通信系统的噪声要求。我们之前曾报道过开发一种符合空间要求的光纤卫星内链路,该链路可以满足精密RF信号的单边带相位噪声的要求。这些链路分配的雷达高度计雷达线性调频信号也满足系统要求。本文报告了我们在设计光纤链路时的进展,该链路可以在同一根光纤上双向传输RF信号。 5、15和80 MHz的测试表明,对于航天器上的雷达高度计系统应用,双向链路满足高度计RF部分对单边带相位噪声的要求。但是,严重的衰减要求放大已调制的信号,这可能会增加接收器部分的噪声水平。需要进一步的工作来优化链路以提高相位噪声性能并解决功耗。!10

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