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Research on the method of suppressing sun and moon's interference on infrared conical earth sensor

机译:抑制日月对红外锥形地球传感器干扰的方法研究

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摘要

To measure the attitude of a satellite, conical earth sensor is usually used on the low- and medium Earth orbit satellite. By detecting the infrared radiation at the horizon using infrared detectors, the conical earth sensor gives a measure of the attitude of a satellite. However, when light from the moon or sun comes into the field of view of the conical earth sensor, it will capture unexpected pulse signals that will induce measurement errors and finally bring about attitude fluctuation of the satellite. In this article, the mechanism of such an interference has been analyzed in depth. By detecting and discriminating the pulse widths of the sun, the moon, and the Earth, a novel method was presented and new software was developed to eliminate the interference. Furthermore, a special ground test platform was set up to verify the proposed method and software. Some real on-orbit flight data were applied as well. Both results showed that the sun and moon's interference was identified and rejected without corrupting the horizon crossing.
机译:为了测量卫星的姿态,通常在低和中地球轨道卫星上使用锥形地球传感器。通过使用红外检测器检测水平线上的红外辐射,圆锥形地球传感器可以测量卫星的姿态。但是,当来自月球或太阳的光进入圆锥形地球传感器的视野时,它将捕获意想不到的脉冲信号,这将引起测量误差,并最终导致卫星的姿态波动。在本文中,已经深入分析了这种干扰的机制。通过检测和区分太阳,月亮和地球的脉冲宽度,提出了一种新颖的方法,并开发了消除干扰的新软件。此外,建立了一个特殊的地面测试平台来验证所提出的方法和软件。还应用了一些真实的在轨飞行数据。两项结果都表明,在不破坏地平线交叉的情况下,太阳和月亮的干扰得以识别并被拒绝。

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