陈仁 1,2高聪 1,2,3吴晓唯 1,2,3周思宇 4[ ... ]丁雷 4
作者单位
摘要
1 中国科学院上海技术物理研究所, 上海 200083
2 中国科学院红外探测与成像技术重点实验室, 上海 200083
3 中国科学院大学电子电气与通讯工程学院, 北京 100049
4 清华大学精密仪器系, 北京 100084
发射于2016年12月11日的风云四号卫星上搭载了国际上首台工作于静止轨道的高光谱红外大气垂直探测仪(GIIRS), 该仪器主要用于探测地球大气的温度和湿度的垂直分布和变化, 观测的数据实时同化到GRAPES全球预报系统, 首次实现了大范围、高频次针对敏感区的卫星高光谱探测和实时资料同化应用, 对目前的气象预报能力产生显著影响, 尤其对台风强度和路径的预报更加精准.本文简要介绍了风四大气垂直探测仪的测量原理和在天气预报中的应用情况, 并对未来的发展趋势给予了展望.
信息技术系统性应用 大气垂直探测仪 傅里叶高光谱探测 气象预报 systematic application of information technology atmospheric vertical sounder Fourier hyperspectral detection weather prediction 
红外与毫米波学报
2019, 38(3): 285
Author Affiliations
Abstract
1 Center of Interferometer R&D, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200082, China
2 Key Laboratory of Infrared System Detection and Imaging Technology, Chinese Academy of Sciences, Shanghai 200082, China
3 Third Engineering Department, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200082, China
4 Infrared Imaging Material and Device Laboratory, Chinese Academy of Sciences, Shanghai 200082, China
5 Key Laboratory of Infrared Imaging Materials and Detectors, Chinese Academy of Sciences, Shanghai 200082, China
6 Department of Optical Coatings and Materials, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200082, China
7 Space Cryocooler System Laboratory, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200082, China
8 State Key Laboratory of Transducer Technology, Chinese Academy of Sciences, Shanghai 200082, China
To measure the global atmospheric three-dimensional distribution and change of temperature and humidity is one of the key areas in atmospheric remote sensing detection; it is also a new research and development direction in the field of meteorological satellite application. As a main element of China second generation of geostationary meteorological satellite Fengyun 4 (FY-4), which was launched on Dec. 11, 2016, the Geostationary Interferometric Infrared Sounder (GIIRS) is the first interferometric infrared sounder working on geostationary orbit internationally. It is used for vertical atmospheric sounding and gains atmospheric temperature, humidity, and disturbances. The combination of Fourier transform spectrometer technology and infrared detectors makes GIIRS have high spectral resolution and large coverage over spatial areas. With this kind of instrument, meteorological satellites can improve the capabilities for severe weather event monitoring and numerical weather prediction. Here a concise review of the GIIRS development project, including its history, missions and functions, technical design, key technologies, system integration, calibration and in-orbit operation status, etc., is presented.
120.3180 Interferometry 120.4820 Optical systems 120.6200 Spectrometers and spectroscopic instrumentation 300.6300 Spectroscopy, Fourier transforms 
Chinese Optics Letters
2018, 16(11): 111203
作者单位
摘要
1 上海应用技术学院, 上海 200235
2 上海交通大学生命科学技术学院, 上海 200240
针对频域光学相干层析(SD-OCT)系统特有硬件(线阵CCD及分光光栅)参数对成像质量造成的影响, 展开了对基于光纤的频域OCT系统中硬件参量的模拟和优化工作, 分析了分光计中CCD线列阵像素数及数字化深度、CCD安装偏差等因素对OCT成像质量的影响, 并对光谱像素图定位进行了修正。研究表明:纵向分辨率不受CCD线列阵像素数的影响, CCD线列阵像素数的增多将线性地增大最大测量深度; CCD数字化深度小于6bit将直接导致系统纵向分辨率的锐减; 线阵CCD偏离聚焦透镜焦面将导致点扩展函数的强度减弱、系统分辨率降低; 在较小角度内转动CCD, 将使纵向分辨率得到提高; 采用氖灯光谱进行像素图定位校正之后, 可以相应地提高系统分辨率。部分模拟结论得到实验验证。采用此模拟优化结果, 可根据OCT成像的具体要求对系统硬件参量进行优化选择。
频域OCT 分辨率 数值模拟 视网膜成像 spectral domain OCT axial resolution numerical simulation retina imaging 
应用光学
2010, 31(3): 467

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