...
首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Towards IASI-New Generation (IASI-NG): impact of improved spectral resolution and radiometric noise on the retrieval of thermodynamic, chemistry and climate variables
【24h】

Towards IASI-New Generation (IASI-NG): impact of improved spectral resolution and radiometric noise on the retrieval of thermodynamic, chemistry and climate variables

机译:对IASI-新一代(IASI-NG):改善光谱分辨率和辐射噪声对热力学,化学和气候变量的检索的影响

获取原文

摘要

Besides their strong contribution to weather forecast improvement through data assimilation, thermal infrared sounders onboard polar-orbiting platforms are now playing a key role for monitoring atmospheric composition changes. The Infrared Atmospheric Sounding Interferometer (IASI) instrument developed by the French space agency (CNES) and launched by EUMETSAT onboard the Metop satellite series is providing essential inputs for weather forecasting and pollution/climate monitoring owing to its smart combination of large horizontal swath, good spectral resolution and high radiometric performance. EUMETSAT is currently preparing the next polar-orbiting program (EPS-SG) with the Metop-SG satellite series that should be launched around 2020. In this framework, CNES is studying the concept of a new instrument, the IASI-New Generation (IASI-NG), characterized by an improvement of both spectral and radiometric characteristics as compared to IASI, with three objectives: (i) continuity of the IASI/Metop series; (ii) improvement of vertical resolution; and (iii) improvement of the accuracy and detection threshold for atmospheric and surface components. In this paper, we show that an improvement of spectral resolution and radiometric noise fulfil these objectives by leading to (i) a better vertical coverage in the lower part of the troposphere, thanks to the increase in spectral resolution; and (ii) an increase in the accuracy of the retrieval of several thermodynamic, climate and chemistry variables, thanks to the improved signal-to-noise ratio as well as less interference between the signatures of the absorbing species in the measured radiances. The detection limit of several atmospheric species is also improved. We conclude that IASI-NG has the potential to strongly benefit the numerical weather prediction, chemistry and climate communities now connected through the European GMES/Copernicus initiative.
机译:除了通过数据同化的天气预报改善的强烈贡献,北侧轨道平台的热红外发声器现在正在为监测大气成分的变化发挥关键作用。由法国空间局(CNES)开发的红外大气探测干涉仪(IASI)仪表由Mumetsat徽章推出,Metop Satellite系列提供了天气预报和污染/气候监测的基本投入,因为它的大型水平静态,好光谱分辨率和高辐射性能。 Eumetsat目前正在准备下一个偏爱轨道计划(EPS-SG),其中包括2020年左右的Metop-SG卫星系列。在这一框架中,CNES正在研究一个新仪器的概念,即IASI新一代(IASI -NG),其特征在于与IASI相比的频谱和辐射特性的改善,三个目标:(i)IASI / METOP系列的连续性; (ii)垂直分辨率的提高; (iii)改进大气和表面部件的准确性和检测阈值。在本文中,我们表明,通过引导(i)通过光谱分辨率的增加,通过通向(i)在对流层的下部更好的垂直覆盖,提高了这些目标的提高; (ii)由于提高的信噪比以及测量的辐射中吸收物种之间的签名之间的干扰较少,增加了几种热力学,气候和化学变量的准确性的提高。还改善了几种大气层的检测限。我们得出结论,IASI-NG有可能强烈效益通过欧洲GMES / Copernicus倡议的数控天气预测,化学和气候社区。
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