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FY-4 Meteorological Satellite 被引量:1
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作者 DONG Yaohai CHEN Xiaojie +4 位作者 CHEN Qiang LYU Wang SHEN Junfeng CHE Lamei JIANG Feng 《Aerospace China》 2017年第2期31-39,共9页
FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly impr... FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly improved with respect to those of first generation, as well as the radiometric calibration and sensitivity. The combination of multichannel detection and vertical sounding was first realized on FY-4, because both the Advanced Geostationary Radiation Imager(AGRI) and Geostationary Interferometric Infrared Sounder(GIIRS) are on the same spacecraft. The main performance of the payloads including AGRI, GIIRS and Lightning Mapping Imager, and the spacecraft bus are presented, the performance being equivalent to the level of the third generation meteorological satellites in Europe and USA. The acquiring methods of remote sensing data including multichannel and high precision quantitative observing, imaging collection of the ground and cloud, vertical observation of atmospheric temperature and moisture, lightning imaging observation and space environment detection are shown. Several innovative technologies including high accuracy rotation angle detection and scanning control, high precision calibration, micro vibration suppression, unified reference of platform and payload and on-orbit measurement, real-time image navigation and registration on-orbit were applied in FY-4. 展开更多
关键词 fy-4 GEO meteorological satellite three-axis stabilization quantitative remote sensing vertical highspectrum sounding real-time on-board image navigation and registration
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Evaluation of Cloud Top Height Retrievals from China’s Next-Generation Geostationary Meteorological Satellite FY-4A 被引量:10
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作者 Zhonghui TAN Shuo MA +2 位作者 Xianbin ZHAO Wei YAN Wen LU 《Journal of Meteorological Research》 SCIE CSCD 2019年第3期553-562,共10页
To evaluate the validity of cloud top height (CTH) retrievals from FY-4A, the first of China's next-generation geostationary meteorological satellite series, the retrievals are compared to those from Himawari-8, C... To evaluate the validity of cloud top height (CTH) retrievals from FY-4A, the first of China's next-generation geostationary meteorological satellite series, the retrievals are compared to those from Himawari-8, CloudSat, Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO), and Moderate Resolution Imaging Spectroradiometer (MODIS) operational products from August to October 2017. Regarding CTHs from CloudSat, CALIPSO, and MODIS as truth, the results show that the performance of FY-4A CTH retrievals is similar to that of Himawari-8. Both FY-4A and Himawari-8 retrieve reasonable CTH values for single-layer clouds, but perform poorly for multi-layer clouds. The mean bias error (MBE) shows that the mean value of FY-4A CTH retrievals is smaller than that of Himawari-8 for single-layer clouds but larger for multi-layer clouds. For ice crystal clouds, both FY-4A and Himawari-8 obtain the underestimated CTHs. However, there is a tendency for FY-4A and Himawari-8 to overestimate the CTH values of CloudSat and CALIPSO mainly for low level liquid water clouds. The temperature inversion near the tops of water clouds may result in an overestimation of CTHs. According to the MBE change with altitude, FY-4A and Himawari-8 overestimate the CTHs mainly for clouds below 3 km, and the overestimation is slightly more apparent in Himawari-8 data than that in FY-4A values. As the cloud optical thickness (COT) increases, the CTH bias of FY-4A CTH retrievals gradually decreases. Two typical cases are analyzed to illustrate the differences between different satellites' CTH retrievals in detail. 展开更多
关键词 fy-4a Himawari-8 cloudSAT cloud-Aerosol Lidar and Infrared PATHFINDER satellite Observations (CALIPSO) MODERATE Resolution imaging SPECTRORADIOMETER (MODIS) cloud top height (CTH)
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碎云环境下GF-4卫星对运动舰船的目标跟踪 被引量:4
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作者 林迅 姚力波 +3 位作者 孙炜玮 刘勇 陈进 简涛 《航天返回与遥感》 CSCD 北大核心 2021年第5期127-139,共13页
针对"高分四号"(GF-4)卫星可进行连续观测和图像分辨率低的特点,文章提出了一种在碎云条件下用GF-4卫星对运动舰船目标进行检测和跟踪的算法。该算法基于区域候选的卷积神经网络(R-CNN)模型构建思路,首先利用双参数恒虚警率(C... 针对"高分四号"(GF-4)卫星可进行连续观测和图像分辨率低的特点,文章提出了一种在碎云条件下用GF-4卫星对运动舰船目标进行检测和跟踪的算法。该算法基于区域候选的卷积神经网络(R-CNN)模型构建思路,首先利用双参数恒虚警率(CFAR)完成候选目标区域提取,以充分利用卷积神经网络(CNN)中LeNet网络在识别简单弱小目标时识别速度快的优势;然后对目标进行静态特征提取和鉴别;最后利用地理航行中的中分纬度法与全局最近邻(GNN)算法相结合进行目标关联和跟踪,形成了目标航迹并获取目标运动信息。文章选取GF-4卫星序列图像对所提算法进行试验,并通过舰船自播报(AIS)信息进行验证,结果显示:该算法能在一定碎云条件下排除碎云目标的干扰,有效地进行运动舰船目标检测与跟踪,具备较强的工程应用价值。 展开更多
关键词 运动舰船目标检测 目标跟踪 碎云条件 卷积神经网络 “高分四号”卫星遥感图像
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Developing the Science Product Algorithm Testbed for Chinese Next-Generation Geostationary Meteorological Satellites:Fengyun-4 Series 被引量:52
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作者 Min MIN Chunqiang WU +12 位作者 Chuan LI Hui LIU Na XU Xiao WU Lin CHEN Fu WANG Fenglin SUN Danyu QIN Xi WANG Bo LI Zhaojun ZHENG Guangzhen CAO Lixin DONG 《Journal of Meteorological Research》 SCIE CSCD 2017年第4期708-719,共12页
Fengyun-4A(FY-4A), the first of the Chinese next-generation geostationary meteorological satellites, launched in2016, offers several advances over the FY-2: more spectral bands, faster imaging, and infrared hypersp... Fengyun-4A(FY-4A), the first of the Chinese next-generation geostationary meteorological satellites, launched in2016, offers several advances over the FY-2: more spectral bands, faster imaging, and infrared hyperspectral measurements. To support the major objective of developing the prototypes of FY-4 science algorithms, two science product algorithm testbeds for imagers and sounders have been developed by the scientists in the FY-4 Algorithm Working Group(AWG). Both testbeds, written in FORTRAN and C programming languages for Linux or UNIX systems, have been tested successfully by using Intel/g compilers. Some important FY-4 science products, including cloud mask, cloud properties, and temperature profiles, have been retrieved successfully through using a proxy imager, Himawari-8/Advanced Himawari Imager(AHI), and sounder data, obtained from the Atmospheric Infra Red Sounder, thus demonstrating their robustness. In addition, in early 2016, the FY-4 AWG was developed based on the imager testbed—a near real-time processing system for Himawari-8/AHI data for use by Chinese weather forecasters.Consequently, robust and flexible science product algorithm testbeds have provided essential and productive tools for popularizing FY-4 data and developing substantial improvements in FY-4 products. 展开更多
关键词 geostationary meteorological satellite fy-4 algorithm testbed cloud properties
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基于高分四号数据的多时相多通道云检测算法 被引量:1
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作者 王纪辉 李峰 +2 位作者 鹿明 马骏 郭毅 《中国空间科学技术》 CSCD 北大核心 2022年第3期132-140,共9页
针对高分四号(GF-4)卫星影像波段较少导致传统云检测算法难以区分云与冰雪像元的问题,提出一种多时相多通道云检测算法。该算法首先对GF-4卫星影像进行辐射定标和配准,然后利用云与典型地表的光谱差异得到潜在云像元,之后利用序列GF-4... 针对高分四号(GF-4)卫星影像波段较少导致传统云检测算法难以区分云与冰雪像元的问题,提出一种多时相多通道云检测算法。该算法首先对GF-4卫星影像进行辐射定标和配准,然后利用云与典型地表的光谱差异得到潜在云像元,之后利用序列GF-4卫星影像之间的差异识别出移动的云像元,最后利用中红外波段反演地表亮度温度来去除冰雪像元。该算法在海南、辽宁和安徽3个研究区域进行验证,并将检测结果与传统单时相云检测算法、支持向量机(SVM)云检测算法和实时差分(RTD)云检测算法的检测结果进行对比。结果表明,该算法优于其他3种云检测算法,准确识别率均达到90%以上,误检率均低于5%,有利于GF-4卫星影像的进一步利用。 展开更多
关键词 高分四号卫星影像 云检测 多时相 光谱差异 中红外波段
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