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米契亚斯卫星的角微振动的光学传感器测量和抑制方法。

Angular micro-vibration of the Micius satellite measured by an optical sensor and the method for its suppression.

出版信息

Appl Opt. 2021 Mar 1;60(7):1881-1887. doi: 10.1364/AO.416811.

Abstract

Satellite angular micro-vibration has an important impact on the efficiency of space quantum communication links. We measured the micro-vibrations on the Micius satellite in orbit using a high-precision optical sensor mounted on the satellite and analyzed the power spectral density. We designed a compound axis acquisition, tracking, and pointing (ATP) system based on a two-axis turntable and tested its suppressive effect on the micro-vibration through in-orbit experiments. The tracking error caused by the angular micro-vibration was found to be 9.3 µrad, with the energy concentrated primarily in the frequencies below 30 Hz; after suppression by the ATP system, the error was 0.47 µrad.

摘要

卫星角微振动对空间量子通信链路的效率有重要影响。我们使用安装在卫星上的高精度光学传感器测量了 Micius 卫星轨道上的微振动,并对其功率谱密度进行了分析。我们设计了一种基于双轴转台的复合轴捕获、跟踪和指向(ATP)系统,并通过在轨实验测试了其对微振动的抑制效果。发现角微振动引起的跟踪误差为 9.3µrad,能量主要集中在 30Hz 以下的频率;经过 ATP 系统抑制后,误差为 0.47µrad。

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