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Optical distribution of microwave signals for Earth Observation satellites

机译:地球观测卫星的微波信号的光分布

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Optical distribution of signals is playing a key role in ESA Earth Observation satellite SMOS (Soil Moisture and Ocean Salinity). This paper is describing a possible evolution of the optical harness in which the Local Oscillator, the calibration microwave signal and the clock reference are distributed in a single fiber thanks to Wavelength Division Multiplexing (WDM). Due to the high sensitivity of the on-board RF Front-ends, degradation effects induced by the optical link can severely affect the overall performance. Therefore, system level requirements like signal isolation or phase noise are to be taken into account. Preliminary test measurements have shown that isolation over 70dB can be obtained in the RF domain. This study is a first step towards the fully distribution of signals through optic fiber in SMOS-like missions.
机译:信号的光学分布在ESA地球观测卫星SMOS(土壤水分和海洋盐度)中起着关键作用。本文描述了光缆的一种可能的发展,其中由于波分复用(WDM),本地振荡器,校准微波信号和时钟参考在单根光纤中分布。由于板载RF前端的高灵敏度,由光链路引起的降级效果会严重影响整体性能。因此,应考虑系统级要求,例如信号隔离或相位噪声。初步测试测量表明,在RF域中可以获得70dB以上的隔离度。这项研究是在类似SMOS的任务中通过光纤完全分配信号的第一步。

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