论文标题
超紫色成像望远镜(UVIT)的自动管道
An Automated Pipeline for Ultra-Violet Imaging Telescope (UVIT)
论文作者
论文摘要
We describe a versatile pipeline for processing the data collected by the Ultra-Violet Imaging Telescope (UVIT) on board Indian Multi-wavelength astronomical satellite AstroSat.The UVIT instrument carries out simultaneous astronomical imaging through selected filters / gratings in Far-Ultra-Violet (FUV), Near-Ultra-Violet & visible (VIS) bands of the targeted circular sky field (~直径0.5度)。该管道将数据(级别1)从其原始原始格式中从紫外线中发出,并补充了来自航天器子系统的输入的紫外线,并将其转换为紫外天空图像(&slit sliteble Gration Spectra)和相关的产品,由天文学家(级别2)易于使用。主要产品包括强度图(光子到达速率),强度错误和有效暴露。该管道是开源的,可以广泛地使用许多可选参数配置,并且其执行是完全自动化的。管道的关键成分包括 - 指向飞船指向的漂移,以及由于内部运动而引起的干扰;将各种校正应用于每个光子的检测器中的测量位置 - 例如差异指向望远镜和探测器的光学元件中的转移和添加操作,系统效果和伪像的差异指向,在天空上进行曝光跟踪,从多集中曝光的天空产品对齐以产生合并的集合和星形统计。每个处理阶段的操作和中间产品的详细日志都可以通过用户选择的选项访问。虽然可为用户提供大量可选参数,但在有效载荷操作中心(POC)的紫外线(POC)执行该管道的标准默认设置,并通过其ISSDC门户将其存档和传播。
We describe a versatile pipeline for processing the data collected by the Ultra-Violet Imaging Telescope (UVIT) on board Indian Multi-wavelength astronomical satellite AstroSat.The UVIT instrument carries out simultaneous astronomical imaging through selected filters / gratings in Far-Ultra-Violet (FUV), Near-Ultra-Violet & visible (VIS) bands of the targeted circular sky field (~ 0.5 deg dia). This pipeline converts the data (Level-1) emanating from UVIT in their raw primitive format supplemented by inputs from the spacecraft sub-systems into UV sky images (& slitless grating spectra) and associated products readily usable by astronomers (Level-2). The primary products include maps of Intensity (rate of photon arrival), error on Intensity and effective Exposure. The pipeline is open source, extensively user configurable with many selectable parameters and its execution is fully automated. The key ingredients of the pipeline includes - extraction of drift in pointing of the spacecraft, and disturbances in pointing due to internal movements; application of various corrections to measured position in the detector for each photon - e.g. differential pointing with respect to a reference frame for shift and add operation, systematic effects and artifacts in the optics of the telescopes and detectors, exposure tracking on the sky, alignment of sky products from multi-episode exposures to generate a consolidated set and astrometry. Detailed logs of operations and intermediate products for every processing stage are accessible via user selectable options. While large number of selectable parameters are available for the user, a well characterized standard default set is used for executing this pipeline at the Payload Operation Centre (POC) for UVIT and selected products are archived and disseminated by the Indian Space Research Organization (ISRO) through its ISSDC portal.