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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Operational retrieval algorithms for JEM/SMILES level 2 data processing system
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Operational retrieval algorithms for JEM/SMILES level 2 data processing system

机译:JEM / SMILES 2级数据处理系统的操作检索算法

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To measure the thermal emission from stratospheric minor species with high sensitivity, the Superconducting Submillimeter-wave Limb-Emission Sounder (SMILES) aboard the Japanese Experiment Module (JEM) of the International Space Station (ISS) carries 4 K cooled Superconductor-Insulator-Superconcluctor (SIS) mixers. The major feature of the SMILES is its high-sensitive measurement ability with low system noise temperature less than 700 K. As a part of the ground system for the SMILES, a level 2 data processing system (DPS-L2) has been developed. It retrieves the density distributions of the target species from calibrated spectra in near-real-time. The retrieval process consists of two parts: the forward model, which computes radiative transfer, and the inverse model, which deduces atmospheric states. Since the forward model must provide the most accurate basis for results and be implemented under limited computing resources, the forward model algorithm for an operational system has to be accurate and fast. Hence, the algorithm is improved (1) by designing accurate instrument functions such as the instrumental field of view (FOV), sideband rejection ratio of sideband separator, and spectral responses of acousto-optic spectrometer (AOS) and (2) by optimizing radiative transfer calculation. This paper presents the development of the DPS-L2 along with the details on its algorithm and the algorithm performance. The accuracy of this algorithm is better than 1%, and the processing time for single-scan spectra is less than 1 min with eight parallel processings using a 3.16-GHz Quad-Core Intel Xeon processor. Thus, this algorithm is suitable for the SMILES measurement.
机译:为了高灵敏度地测量平流层小物种的热辐射,国际空间站(ISS)的日本实验模块(JEM)上的超导亚毫米波肢发声探测器(SMILES)装有4 K冷却的超导体-绝缘体-超导体(SIS)混音器。 SMILES的主要特征是它的高灵敏测量能力和低于700 K的低系统噪声温度。作为SMILES地面系统的一部分,已经开发了2级数据处理系统(DPS-L2)。它从校准的光谱中近实时地检索目标物种的密度分布。检索过程包括两部分:计算辐射传递的正向模型和推断大气状态的逆模型。由于前向模型必须为结果提供最准确的基础,并且必须在有限的计算资源下实现,因此用于操作系统的前向模型算法必须准确且快速。因此,改进算法(1)通过设计精确的仪器功能,例如仪器视野(FOV),边带分离器的边带抑制比和声光光谱仪(AOS)的光谱响应,以及(2)通过优化辐射转移计算。本文介绍了DPS-L2的开发以及其算法和算法性能的详细信息。该算法的精度优于1%,使用3.16-GHz四核Intel Xeon处理器进行八次并行处理后,单扫描光谱的处理时间不到1分钟。因此,该算法适用于微笑测量。

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