首页> 外文会议>Conference on Space Telescopes and Instrumentation >On-board data processing for the Near Infrared Spectrograph and Photometer instrument (NISP) of the EUCLID mission
【24h】

On-board data processing for the Near Infrared Spectrograph and Photometer instrument (NISP) of the EUCLID mission

机译:用于近红外光谱仪和欧几里德任务的光度计仪器(NISP)的车载数据处理

获取原文

摘要

The Near Infrared Spectrograph and Photometer (NISP) is one of the two instruments on board the EUCLID mission now under implementation phase; VIS, the Visible Imager is the second instrument working on the same shared optical beam. The NISP focal plane is based on a detector mosaic deploying 16×, 2048×2048 pixels~(^2) HAWAII-II HgCdTe detectors, now in advanced delivery phase from Teledyne Imaging Scientific (TIS), and will provide NIR imaging in three bands (Y, J, H) plus slit-less spectroscopy in the range 0.9÷2.0 micron. All the NISP observational modes will be supported by different parametrization of the classic multi-accumulation IR detector readout mode covering the specific needs for spectroscopic, photometric and calibration exposures. Due to the large number of deployed detectors and to the limited satellite telemetry available to ground, a consistent part of the data processing, conventionally performed off-line, will be accomplished on board, in parallel with the flow of data acquisitions. This has led to the development of a specific on-board, HW/SW, data processing pipeline, and to the design of computationally performing control electronics, suited to cope with the time constraints of the NISP acquisition sequences during the sky survey. In this paper we present the architecture of the NISP on-board processing system, directly interfaced to the SIDECAR ASICs system managing the detector focal plane, and the implementation of the on-board pipe-line allowing all the basic operations of input frame averaging, final frame interpolation and data-volume compression before ground down-link.
机译:近红外光谱仪和光度计(NISP)是上板下执行阶段现在欧几里得任务两种仪器中的一个; VIS,可见成像仪是在相同的共享光束的第二器械的工作。国家信息社会政策焦平面是基于检测器镶嵌部署16×,2048×2048像素〜(^ 2)夏威夷-II碲镉汞检测器,现在在自Teledyne成像科学(TIS)高级递送阶段,并且将提供NIR成像在三个频带(Y,J,H)加上在范围0.9÷2.0微米狭缝少光谱。所有的观测NISP模式将通过不同的参数化对于覆盖光谱,光度和曝光校正的具体需要的经典多积累IR检测器读出模式来支持。由于大量部署探测器,并提供给地面的有限卫星遥测,数据处理的一个一致的部分,以往进行脱线,将上板与数据采集的流动来实现,在平行。这导致了车载特定的发展,HW / SW,数据处理流水线,并计算执行控制电子设备的设计,适合于应对天空测量期间NISP采集序列的时间的限制。在本文中,我们目前的NISP上处理系统的体系结构,直接连接到所述边车的ASIC系统中管理探测器焦平面,并且所述车载管线允许输入帧相关的所有基本操作的实现,最终的帧插值和数据量压缩前地面下行链路。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号