首页> 外文会议>2012 IEEE International Geoscience amp; Remote Sensing Symposium. >Tangent height accuracy of superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) on International Space Station (ISS)
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Tangent height accuracy of superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) on International Space Station (ISS)

机译:国际空间站(ISS)上的超导亚毫米波肢发声探测器(SMILES)的切线高度精度

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The attitude detection system installed in the Superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) had insufficient angular precision for limb observation. While the SMILES observation provides extremely low-noise emission spectra, the large error in the tangent height of limb viewing due to the poor knowledge of the attitude often limits the accuracy of the SMILES products, such as volume mixing ratio of atmospheric molecules. The attitude data from a ring laser gyroscope (RLG) installed in a nearby experiment unit, Monitor of All-sky X-ray Image (MAXI), is used to improve the tangent-height error. We create a customized attitude data set from the RLG data initialized with information from the SMILES star sensor. Applying this customized RLG attitude, we can know the tangent height of limb observations with an improved precision of less than 140 m.
机译:安装在超导亚毫米波肢发声测深仪(SMILES)中的姿态检测系统的角度精度不足以进行肢体观察。尽管SMILES观测提供了极低的噪声发射光谱,但由于对姿态的了解不足而导致的肢体切线高度切线误差较大,这通常会限制SMILES产品的精度,例如大气分子的体积混合比。来自安装在附近实验单元“全天空X射线图像监视器(MAXI)”中的环形激光陀螺仪(RLG)的姿态数据用于改善切线高度误差。我们根据RLG数据创建一个自定义的姿态数据集,该数据用来自SMILES星型传感器的信息初始化。使用这种定制的RLG姿态,我们可以以不到140 m的改进精度知道肢体观察的切线高度。

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