首页> 外文会议>Optical Design and Engineering II pt.2 >Suppression of Sun Interference in the Star Sensor Baffling Stray Light by Total Internal Reflection
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Suppression of Sun Interference in the Star Sensor Baffling Stray Light by Total Internal Reflection

机译:通过全内反射抑制星敏感器杂散光中的太阳干扰

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We have developed a star sensor as an experimental device onboard the SERVIS-1 satellite launched in October 2003. The in-orbit data have verified its fundamental performance. One of the advantages of our star sensor is that the baffle has a small length of 120 mm instead of 182 mm in the conventional two-stage baffle design. The key concepts for light shielding are total internal reflection phenomena inside a nearly half sphere (NHS) lens and scattering light control by gloss black paint. However, undesirable background noise by the sun outside of the field of view (FOV) was observed in the corner of the FOV in the orbital experiment. Ray trace simulations revealed that slight scattering light on the specular baffle wall entered the NHS lens and reached the comer of the image sensor through the multi-reflection path inside the lens. It was found that the stray light path can be shielded effectively if the diameter of the aperture under the NHS lens was reduced. We redesigned the baffle and evaluated the light shielding ability with our sun interference test facility on the ground, and confirmed that the stray light was reduced below the acceptable level. As a result, the light shielding technique which we have proposed was proved to be effective for a small-size baffle. The redesigned star sensor is planned to be installed as a main attitude sensor for the SERVIS-2 satellite scheduled to be launched in February 2008.
机译:我们已经开发了一种恒星传感器,作为2003年10月发射的SERVIS-1卫星上的实验装置。在轨数据已经验证了其基本性能。我们的星形传感器的优点之一是挡板的长度为120 mm,而不是传统的两级挡板设计中的182 mm。遮光的关键概念是近半球形(NHS)透镜内部的全内反射现象,以及由光泽黑色涂料控制的散射光。但是,在轨道实验中,在视场(FOV)的拐角处观察到了视场(FOV)外部太阳发出的不良背景噪声。光线跟踪模拟显示,镜面挡板壁上的少量散射光进入NHS透镜,并通过透镜内部的多反射路径到达图像传感器的拐角。发现如果减小NHS透镜下方的孔的直径,则杂散光路可以被有效地屏蔽。我们重新设计了挡板,并在地面上使用我们的阳光干扰测试设备评估了遮光能力,并确认杂散光降低到了可接受的水平以下。结果,我们提出的光屏蔽技术被证明对于小型挡板是有效的。重新设计的星形传感器计划作为SERVIS-2卫星的主要姿态传感器安装,该卫星计划于2008年2月发射。

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