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A 40-year cloud climatological study for Australia: Implications for siting of laser communication infrastructure

机译:澳大利亚40岁的云气候学习:对激光通信基础设施选址的影响

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Cloud cover, cloud properties, and the change in cloud cover over time are important variables to quantify in planning for ground-space bidirectional high bandwidth optical communication systems. As operators of optical communication systems will endeavor to function when skies have optically thin cloud cover, a climatological study that includes cloud physics in the dataset (i.e., cloud emissivity and cloud optical depth) will provide beneficial guidance. As a first step in undertaking such an investigation, we have initiated a study of the Australian continent with the aim of identifying any significant decadal trends in cloud climatology over a 40-year period. The database, covering PATMOS-x AVHRR cloud data from 1979 to 2018, includes sampling of the climatology at four times during the diurnal cycle so that selection of operating conditions can be further analyzed. Examples of the spatial and temporal variability of satellite-derived cloud fractional amounts over Australia will be presented along with an approach to analyzing and interpreting this information in aid of the decision-making process to optimize clear-sky optical ground station positioning. When used in conjunction with the average monthly cloud amount, monthly specific decadal time-specific anomalies can highlight when and where minimum levels of cloud cover occur.
机译:云覆盖,云属性以及云覆盖的变化随着时间的推移是规划地面空间双向高带宽光通信系统的规划中的重要变量。由于光通信系统的操作员将在天空具有光学薄云覆盖时努力起作用,这是一种在数据集中包括云物理学(即云发出率和云光学深度)的气候学研究将提供有益的指导。作为进行此类调查的第一步,我们已经开始研究澳大利亚大陆,目的是在40年内识别云气候学的任何显着的截止趋势。从1979年到2018年覆盖PATMOS-X AVHRR云数据的数据库包括在昼夜循环期间四次采样气候学,可以进一步分析操作条件的选择。将介绍澳大利亚卫星衍生的云分数数量的空间和时间变异性的例子,并提出了一种分析和解释这些信息的方法,以便在决策过程中优化清晰天光接地站定位。当与平均每月云量结合使用时,每月特定的Decadal时间特异性异常可以突出显示云覆盖的最小云覆盖的时间。

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