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Effect of aperture averaging on a 570-Mbps 42 km horizontal path optical link

机译:平均孔径对570-Mbps 42 km水平路径光链路的影响

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Abstract: Optical communications offer high data rate satellite to ground communications in a small, low mass, and low power consumption package. However, turbulence-induced scintillation degrades the link performance as the zenith angle increases. To investigate the effect of atmospheric turbulence on the optical link at high zenith angles, we performed a 570 Mbps optical communications link across a 42 km horizontal path, and have measured the effects of aperture averaging on the irradiance variance. The variance clearly showed a dependence on the aperture size, decreasing with increasing aperture size. These results were used to calculate the log-amplitude variance and the atmospheric structure constant, C$-n$/$+2$/, across the link. The bit error rates across the link were also measured. The results show that the link performance was dominated by burst errors with error rates that ranged from 10$+$MIN@6$/ to 10$+$MIN@2$/, increasing with decreasing aperture size.!10
机译:摘要:光通信以小型,低质量和低功耗的封装提供了高数据速率的卫星到地面通信。但是,随着天顶角的增加,湍流引起的闪烁会降低连接性能。为了研究大气湍流对高天顶角的光链路的影响,我们在一条42 km的水平路径上执行了570 Mbps的光通信链路,并测量了孔径平均对辐照度方差的影响。该变化清楚地显示出对孔尺寸的依赖性,其随孔尺寸的增加而减小。这些结果用于计算整个链路的对数振幅方差和大气结构常数C $ -n $ / $ + 2 $ /。还测量了链路上的误码率。结果表明,链路性能受到突发错误的支配,错误率的范围从10 $ + $ MIN @ 6 $ /到10 $ + $ MIN @ 2 $ /,随着孔径的减小而增加。!10

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