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Innovations in the Data Processing Algorithm for Chinese FY Meteorological Satellites
  • ISSN号:2095-6037
  • 期刊名称:《气象学报:英文版》
  • 分类:P228.4[天文地球—大地测量学与测量工程;天文地球—测绘科学与技术] V474.24[航空宇航科学与技术—飞行器设计;航空宇航科学技术]
  • 作者机构:[1]National Satellite Meteorological Center, China Meteorological Administration, Beijing 100081
  • 相关基金:Supported by the National Natural Science Foundation of China (40275007, 41275036, 40971200, 41075019, 41275034, 91338203, and 40705037), China Meteorological Administration Special Public Welfare Research Fund (GYHY201206002), Ministry of Finance (201306001), and Ministry of Science and Technology of China (863-2003AA133050 and 2012AA120903).
中文摘要:

这研究在为中国 FY 气象学的卫星处理算法的数据介绍一些革新。关于卫星图象航行,放射刻度,和数据吸收的问题被讨论。

英文摘要:

This study introduces some innovations in the data processing algorithm for Chinese FY meteorological satellites. Issues about satellite image navigation, radiation calibration, and data assimilation are discussed. A time series of the earth's disk center-line count provides information on the orientation of the satellite spin axis. With this information, the altitude parameters of the satellite and then the earth disk location in the south-north direction may be solved. In each spin cycle, the satellite views the sun and the earth. Given the satellite position and altitude, the angle (β) subtended at the satellite by the sun and the earth can be calculated and predicted. Thus, the earth's disk location in the east-west direction is fixed. Based on this principle, we derived an automatic image navigation algorithm for FY2 geosynchronous meteorological satellites with an accuracy approaching pixel level. The FY2 meteorological satellite traveling in a geostationary orbit suffers a large amount of radiation from the sun. The radiation varies on both diurnal and annual scales, which causes radiation responses in the thermal infrared (IR) bands wherein the wavelengths greater than 3.5 μm vibrate periodically on scales of hours to years. These vibrations must be precisely calibrated. First, based on the accurate estimation of the radiant contribution from the front-optics, the variation characteristics of the calibration parameters are obtained on a temporal scale of hours from the space-borne inner-blackbody (IBB) measurement results. Second, the in-orbit measured radiation of the lunar surface is referenced and utilized to correct the sys- tematic bias of the IBB calibration from daily to annual scales. By using such algorithms, we achieved a calibration accuracy of the FY2 satellite's IR imagery of less than 1 K. The on-orbit satellite instrument parameters play an important role in data quality; however, they may be mis-measured due to limitations in the measurement conditions or may be

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期刊信息
  • 《气象学报:英文版》
  • 主管单位:
  • 主办单位:中国气象学会
  • 主编:
  • 地址:北京市中关村南大街46号
  • 邮编:100081
  • 邮箱:cmsams@163.com
  • 电话:010-68407634
  • 国际标准刊号:ISSN:2095-6037
  • 国内统一刊号:ISSN:11-2277/P
  • 邮发代号:
  • 获奖情况:
  • 国内外数据库收录:
  • 荷兰地学数据库,荷兰文摘与引文数据库,美国剑桥科学文摘,美国科学引文索引(扩展库)
  • 被引量:280