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Derivation of Molecular Species Profiles, Atmospheric Temperature Profile and Instrumental Pointing from SMILES Instrument

机译:微笑仪器的分子物种型材,大气温度曲线和仪器指向的衍生

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Recent progress in sub-millimeter wave receiver technology gives the possibility to drastically improve the quality of limb sounding data by use of a superconductor-insulator-superconductor (SIS) mixer element. This receiver will detect molecular spectra with a signal-to-noise ratio one order of magnitude better than the conventional ambient-temperature Schottky receiver. SMILES (Superconductor Submillimeter-wave Limb-emission Sounder) is proposed by the Communications Research Laboratory and the National Space Agency of Japan, with technical support from the National Astronomical Observatory, and with scientific support from the University of Bremen, in order to demonstrate the new sub-millimeter wave technology in space, and to conduct the measurements of limb-emission sounding for a group of molecular species profiles. In order to anticipate the performance of the instrument, retrieval simulations are carried out. Synthetic measurements, as will be recorded by the SMILES instrument, are generated by the use of a forward model. These are then inverted, using an inversion model, in order to derive the variables of interest, such as molecular species profiles (e.g., O_3, ClO, HCl), atmospheric temperature profile, or a first order instrumental pointing correction (i.e., a pointing offset). The applied inversion algorithm is the Optimal Estimation Method (OEM). The advantage of the OEM is that it allows a formal error analysis needed for a general error characterization of retrieval performance. The error analysis takes into consideration the total statistical error, the measurement error, the vertical altitude resolution, and the correlation between the retrieved quantities. The altitude domain of a good measurement sensibility is defined by the measurement response.
机译:在亚毫米波接收机技术的最新进展提供了以通过使用超导体 - 绝缘体 - 超导体(SIS)混合器元件的显着改善肢体探测数据的质量的可能性。这个接收器将检测分子谱与幅值的信噪比一个顺序比传统常温肖特基接收机更好。 SMILES(超导亚毫米波肢发射探测仪),提出由通信国家重点实验室和日本国家航天局,与国家天文台的技术支持,并与不来梅大学科研支持,为了证明新亚毫米波技术中的空间,并进行肢体发射的探测为一组的分子种类轮廓的测量。为了预见到仪器的性能,检索仿真被执行。综合测量,将由SMILES仪器记录下来,通过使用正向模型的生成。然后这些反转,使用反演模型,以便得出感兴趣的变量,如分子种类型材(例如,O_3,CLO,盐酸盐),大气温度分布,或一阶器乐指向校正(即,指向抵消)。所施加的反演算法是最优估计方法(OEM)。在OEM的好处是,它允许需要的检索性能一般错误表征正式误差分析。误差分析考虑了总统计误差,测量误差,垂直高度分辨率,并且所检索的量之间的相关性。一个良好的测量灵敏度的高度域由测量响应定义。

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