首页> 外文会议>Conference on remote sensing of clouds and the atmosphere >Information content analysis for a novel TES-based Hyperspectral Microwave Atmospheric Sounding Instrument
【24h】

Information content analysis for a novel TES-based Hyperspectral Microwave Atmospheric Sounding Instrument

机译:基于TES的新型高光谱微波大气探测仪器的信息内容分析

获取原文

摘要

In context of numerical weather prediction (NWP), increased usage of satellites radiance observations from passive microwave sensors have brought significant improvements in the forecast skills. In the infrared spectral region, hyperspectral sounder instruments such as IASI have already benefitted the NWP assimilation systems, but they are useful only under clear sky conditions. Currently, microwave instruments are providing wealth of information on clouds, precipitation and surface etc., but only with limited number of channels. Furthermore, due to limited number of channels and with poor signal-to-noise ratio, existing passive microwave sensors have very poor resolution and accuracy. We are currently developing a new microwave instrument concept, based on superconducting filterbank spectrometers, which will enable high spectral resolution observations of atmospheric temperature and humidity profiles across the microwave/sub-millimeter wavelength region with photon-noise-limited sensitivity. This study aims at investigating the information content on temperature and water-vapour that could be provided by such a hyperspectral microwave instrument under clear sky-conditions. Here, we present a new concept of Transition Edge Sensors (TESs)-based hyperspectral microwave instrument for atmospheric sounding applications. In this study, for assessing the impact of hyperspectral sampling in microwave spectral region in clear sky-conditions, we have estimated the information content as standard figure of merit called as degrees of freedom for signal (DFS). The DFS for a set of temperature and humidity sounding channels (50-60 GHz, 118GHz and 183 GHz) have been analyzed under the linear optimal estimation theory framework.
机译:在数值天气预报(NWP)的背景下,无源微波传感器对卫星辐射观测的使用增加,极大地提高了预报技能。在红外光谱区域,诸如IASI之类的高光谱探测仪已经使NWP同化系统受益,但它们仅在晴朗的天空条件下才有用。当前,微波仪器正在提供有关云,降水和地表等方面的大量信息,但只能提供有限数量的通道。此外,由于通道数量有限以及信噪比差,现有的无源微波传感器的分辨率和精度都非常差。目前,我们正在开发一种基于超导滤光片光谱仪的新型微波仪器概念,它将能够以光子噪声限制的灵敏度,在微波/亚毫米波长范围内以高光谱分辨率观察大气温度和湿度曲线。这项研究旨在调查在晴朗的天空条件下这种高光谱微波仪器可以提供的有关温度和水蒸气的信息内容。在这里,我们介绍了一种基于过渡边缘传感器(TES)的高光谱微波仪器的新概念,适用于大气探测应用。在这项研究中,为了评估晴朗天空条件下微波光谱区域中高光谱采样的影响,我们将信息内容估计为标准品质因数,称为信号自由度(DFS)。在线性最佳估计理论框架下,分析了一组温度和湿度探测通道(50-60 GHz,118GHz和183 GHz)的DFS。

著录项

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