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Quantifying the effect of atmospherically-induced pointing errors in optical geostationary satellite feeder links using transmitter diversity

机译:使用发射机分集来量化光学地静止卫星馈线链路中的大气引起的指向误差的影响

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摘要

Optical links to geostationary (GEO) satellites suffer from atmospherically-induced beam wander which leads to pointing errors at the satellite causing deep fades. In this paper, we show the benefit of transmitter diversity in reducing the fades caused by beam wander. We derive an analytical expression for the reduction of overall scintillation index for a given number of transmitted beams with Gaussian profile in a multiple-input single-output (MISO) system considering solely the effect of beam wander. The transmitted power, beam divergence angle and pointing jitter are kept as free parameters as in the real situation. Moreover, the optimized ratio of transmitted powers between multiple beams is obtained though simulations for a two-fold transmitter diversity to obtain minimum overall power scintillation index (PSI).
机译:光学链接到地静止(地理)卫星患有大气引起的光束漂移,导致卫星指向诸如造成深度褪色的误差。在本文中,我们展示了发射器多样性在减少梁漂泊引起的渐渐变化中的益处。我们通过在多输入单输出(MISO)系统中,通过在多输入单输出(MISO)系统中,通过在多输入单输出(MISO)系统中,来衍生用于减少给定数量的传输光束的整体闪烁指数的分析表达。传输的功率,光束发散角和指向抖动保持在真实情况下的自由参数。此外,尽管为双倍发射机分集进行了模拟以获得最小总功率闪烁指数(PSI),但获得多个光束之间的透射功率的优化比率。

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