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Radiation properties of moving constellations of (nano) satellites: A complexity study

机译:(纳米)卫星移动星座的辐射特性:复杂性研究

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摘要

The (computational) complexity involved by beamforming in moving constellations of (nano) satellites is investigated by means of illustrative numerical experiments. While the number of radiators in such three-dimensional (3D) array antennas is not large, evaluating their radiation patterns entails challenging computational intricacies in view of the satellites being in motion and each satellite performing general 3D rotations. As a result, the relevant array radiation patterns become time-dependent, the elementary radiation patterns being themselves time-dependent. The discussed experiments will illustrate the time evolution of the radiation pattern for given individual satellite orbits and rotation laws. At the same time, they will provide a basis for estimating the computational complexity involved by predicting the complete beamforming in future space-bound remote sensing missions using constellations of (nano) satellites.
机译:通过说明性的数值实验研究了波束成形在(纳米)卫星的移动星座中所涉及的(计算)复杂度。尽管在这种三维(3D)阵列天线中的辐射器的数量并不大,但是鉴于卫星处于运动状态并且每个卫星都进行一般的3D旋转,因此评估它们的辐射方向图对计算的复杂性提出了挑战。结果,相关的阵列辐射图变得与时间有关,而基本辐射图本身就与时间有关。讨论的实验将说明给定的单个卫星轨道和旋转定律的辐射方向图的时间演变。同时,它们将为通过使用(纳米)卫星群预测未来的空域遥感任务中的完整波束成形提供估算所涉及的计算复杂性的基础。

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