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Chinese GF-1 and GF-3 satellites observed the giant iceberg calving off the Larsen C Ice Shelf 被引量:1
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作者 SHI Lijian WANG Qimao +1 位作者 ZENG Tao LIANG Chao 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2017年第11期115-115,共1页
A massive iceberg, named A-68 by National Ice Center (NIC) officially, calved away from the Larsen C Ice Shelf in Antarctica on luly 12, 2017. The iceberg A-68 is about 5 800 km2, weighs more than a trillion tons an... A massive iceberg, named A-68 by National Ice Center (NIC) officially, calved away from the Larsen C Ice Shelf in Antarctica on luly 12, 2017. The iceberg A-68 is about 5 800 km2, weighs more than a trillion tons and it is one of the biggest ever recorded icebergs. Chinese satellites Gaofen-1 (GF-1) and Gaofen-3 (GF-3) data was used to monitoring the propagation of the rift and the iceberg by National Satellite Ocean Application Service (NSOAS). 展开更多
关键词 GF SAR Chinese gf-1 and gf-3 satellites observed the giant iceberg calving off the Larsen C Ice Shelf Figure
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GF-3 Satellite Put into Operation
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作者 CUI Enhui 《Aerospace China》 2017年第1期61-61,共1页
GF-3,China’s first C-band Synthetic Aperture Radar(SAR)satellite with multiple polarizations,has been put into use from January 23.The SAR-C satellite has a 1 m resolution.CNSA Deputy Director WU Yanhua and CASC Vice... GF-3,China’s first C-band Synthetic Aperture Radar(SAR)satellite with multiple polarizations,has been put into use from January 23.The SAR-C satellite has a 1 m resolution.CNSA Deputy Director WU Yanhua and CASC Vice President YANG Baohua attended the ceremony for the commencement of formal operation of GF-3.GF-3 is the first LEO remote sens- 展开更多
关键词 CASC gf-3 satellite Put into Operation
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Analysis of the joint detection capability of the SMILE satellite and EISCAT-3D radar 被引量:1
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作者 JiaoJiao Zhang TianRan Sun +7 位作者 XiZheng Yu DaLin Li Hang Li JiaQi Guo ZongHua Ding Tao Chen Jian Wu Chi Wang 《Earth and Planetary Physics》 EI CSCD 2024年第1期299-306,共8页
The Solar wind Magnetosphere Ionosphere Link Explorer(SMILE)satellite is a small magnetosphere–ionosphere link explorer developed cooperatively between China and Europe.It pioneers the use of X-ray imaging technology... The Solar wind Magnetosphere Ionosphere Link Explorer(SMILE)satellite is a small magnetosphere–ionosphere link explorer developed cooperatively between China and Europe.It pioneers the use of X-ray imaging technology to perform large-scale imaging of the Earth’s magnetosheath and polar cusp regions.It uses a high-precision ultraviolet imager to image the overall configuration of the aurora and monitor changes in the source of solar wind in real time,using in situ detection instruments to improve human understanding of the relationship between solar activity and changes in the Earth’s magnetic field.The SMILE satellite is scheduled to launch in 2025.The European Incoherent Scatter Sciences Association(EISCAT)-3D radar is a new generation of European incoherent scatter radar constructed by EISCAT and is the most advanced ground-based ionospheric experimental device in the high-latitude polar region.It has multibeam and multidirectional quasi-real-time three-dimensional(3D)imaging capabilities,continuous monitoring and operation capabilities,and multiple-baseline interferometry capabilities.Joint detection by the SMILE satellite and the EISCAT-3D radar is of great significance for revealing the coupling process of the solar wind–magnetosphere–ionosphere.Therefore,we performed an analysis of the joint detection capability of the SMILE satellite and EISCAT-3D,analyzed the period during which the two can perform joint detection,and defined the key scientific problems that can be solved by joint detection.In addition,we developed Web-based software to search for and visualize the joint detection period of the SMILE satellite and EISCAT-3D radar,which lays the foundation for subsequent joint detection experiments and scientific research. 展开更多
关键词 Solar wind Magnetosphere Ionosphere Link Explorer(SMILE)satellite European Incoherent Scatter Sciences Association(EISCAT)-3D radar joint detection
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The First Global Map of Atmospheric Ammonia(NH_(3)) as Observed by the HIRAS/FY-3D Satellite
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作者 Minqiang ZHOU Zhili DENG +6 位作者 Charles ROBERT Xingying ZHANG Lu ZHANG Yapeng WANG Chengli QI Pucai WANG Martine De MAZIÈRE 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第3期379-390,共12页
Atmospheric ammonia(NH_(3)) is a chemically active trace gas that plays an important role in the atmospheric environment and climate change. Satellite remote sensing is a powerful technique to monitor NH_(3) concentra... Atmospheric ammonia(NH_(3)) is a chemically active trace gas that plays an important role in the atmospheric environment and climate change. Satellite remote sensing is a powerful technique to monitor NH_(3) concentration based on the absorption lines of NH_(3) in the thermal infrared region. In this study, we establish a retrieval algorithm to derive the NH_(3)column from the Hyperspectral Infrared Atmospheric Sounder(HIRAS) onboard the Chinese Feng Yun(FY)-3D satellite and present the first atmospheric NH_(3) column global map observed by the HIRAS instrument. The HIRAS observations can well capture NH_(3) hotspots around the world, e.g., India, West Africa, and East China, where large NH_(3) emissions exist. The HIRAS NH_(3) columns are also compared to the space-based Infrared Atmospheric Sounding Interferometer(IASI)measurements, and we find that the two instruments observe a consistent NH_(3) global distribution, with correlation coefficient(R) values of 0.28–0.73. Finally, some remaining issues about the HIRAS NH_(3) retrieval are discussed. 展开更多
关键词 AMMONIA HIRAS/FY-3D satellite thermal-infrared observation remote sensing optimal estimation method
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Overview of Chinese First C Band Multi-Polarization SAR Satellite GF-3 被引量:5
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作者 ZHANG Qingjun LIU Yadong 《Aerospace China》 2017年第3期22-31,共10页
The GF-3 satellite, the first C band and multi-polarization Synthetic Aperture Radar(SAR) satellite in China, achieved breakthroughs in a number of key technologies such as multi-polarization and the design of a multi... The GF-3 satellite, the first C band and multi-polarization Synthetic Aperture Radar(SAR) satellite in China, achieved breakthroughs in a number of key technologies such as multi-polarization and the design of a multiimaging mode, a multi-polarization phased array SAR antenna, and in internal calibration technology. The satellite technology adopted the principle of "Demand Pulls, Technology Pushes", creating a series of innovation firsts, reaching or surpassing the technical specifications of an international level. 展开更多
关键词 gf-3 satellite system design APPLICATION
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Cloud Top Pressure Retrieval Using Polarized and Oxygen A-band Measurements from GF5 and PARASOL Satellites
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作者 Lesi WEI Huazhe SHANG +6 位作者 Jian XU Chong SHI Gegen TANA Kefu CHAO Shanhu BAO Liangfu CHEN Husi LETU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第4期680-700,共21页
Cloud top pressure(CTP)is one of the critical cloud properties that significantly affects the radiative effect of clouds.Multi-angle polarized sensors can employ polarized bands(490 nm)or O_(2)A-bands(763 and 765 nm)t... Cloud top pressure(CTP)is one of the critical cloud properties that significantly affects the radiative effect of clouds.Multi-angle polarized sensors can employ polarized bands(490 nm)or O_(2)A-bands(763 and 765 nm)to retrieve the CTP.However,the CTP retrieved by the two methods shows inconsistent results in certain cases,and large uncertainties in low and thin cloud retrievals,which may lead to challenges in subsequent applications.This study proposes a synergistic algorithm that considers both O_(2)A-bands and polarized bands using a random forest(RF)model.LiDAR CTP data are used as the true values and the polarized and non-polarized measurements are concatenated to train the RF model to determine CTP.Additionally,through analysis,we proposed that the polarized signal becomes saturated as the cloud optical thickness(COT)increases,necessitating a particular treatment for cases where COT<10 to improve the algorithm's stability.The synergistic method was then applied to the directional polarized camera(DPC)and Polarized and Directionality of the Earth’s Reflectance(POLDER)measurements for evaluation,and the resulting retrieval accuracy of the POLDER-based measurements(RMSEPOLDER=205.176 hPa,RMSEDPC=171.141 hPa,R^(2)POLDER=0.636,R^(2)DPC=0.663,respectively)were higher than that of the MODIS and POLDER Rayleigh pressure measurements.The synergistic algorithm also showed good performance with the application of DPC data.This algorithm is expected to provide data support for atmosphere-related fields as an atmospheric remote sensing algorithm within the Cloud Application for Remote Sensing,Atmospheric Radiation,and Updating Energy(CARE)platform. 展开更多
关键词 atmospheric remote sensing cloud top pressure multi-angle polarized O_(2)A-band gf-5/DPC PARASOL/POLDER-3
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On-orbit Geometric Calibration and Preliminary Accuracy Evaluation of GF-14 Satellite
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作者 Xueliang LU Jianrong WANG +4 位作者 Xiuce YANG Yuan LYU Yan HU Bincai CAO Junming ZHOU 《Journal of Geodesy and Geoinformation Science》 CSCD 2023年第2期62-70,共9页
GF-14 satellite is a new generation of sub-meter stereo surveying and mapping satellite in China,carrying dual-line array stereo mapping cameras to achieve 1∶10000 scale topographic mapping without Ground Control Poi... GF-14 satellite is a new generation of sub-meter stereo surveying and mapping satellite in China,carrying dual-line array stereo mapping cameras to achieve 1∶10000 scale topographic mapping without Ground Control Points(GCPs).In fact,space-based high-precision mapping without GCPs is a challenging task that depends on the close cooperation of several payloads and links,of which on-orbit geometric calibration is one of the most critical links.In this paper,the on-orbit geometric calibration of the dual-line array cameras of GF-14 satellite was performed using the control points collected in the high-precision digital calibration field,and the calibration parameters of the dual-line array cameras were solved as a whole by alternate iterations of forward and backward intersection.On this basis,the location accuracy of the stereo images using the calibration parameters was preliminarily evaluated by using several test fields around the world.The evaluation result shows that the direct forward intersection accuracy of GF-14 satellite images without GCPs after on-orbit geometric calibration reaches 2.34 meters(RMS)in plane and 1.97 meters(RMS)in elevation. 展开更多
关键词 gf-14 satellite high-precision digital calibration field on-orbit geometric calibration without ground control points accuracy evaluation
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Integrating Highly Spatial Satellite Image for 3D Buildings Modelling Using Geospatial Algorithms and Architecture Environment
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作者 Hayder Dibs Nadhir Al-Ansari 《Engineering(科研)》 CAS 2023年第4期220-233,共14页
The growing demand for current and precise geographic information that pertains to urban areas has given rise to a significant interest in digital surface models that exhibit a high level of detail. Traditional method... The growing demand for current and precise geographic information that pertains to urban areas has given rise to a significant interest in digital surface models that exhibit a high level of detail. Traditional methods for creating digital surface models are insufficient to reflect the details of earth’s features. These models only represent three-dimensional objects in a single texture and fail to offer a realistic depiction of the real world. Furthermore, the need for current and precise geographic information regarding urban areas has been increasing significantly. This study proposes a new technique to address this problem, which involves integrating remote sensing, Geographic Information Systems (GIS), and Architecture Environment software environments to generate a detailed three-dimensional model. The processing of this study starts with: 1) Downloading high-resolution satellite imagery; 2) Collecting ground truth datasets from fieldwork; 3) Imaging nose removing; 4) Generating a Two-dimensional Model to create a digital surface model in GIS using the extracted building outlines; 5) Converting the model into multi-patch layers to construct a 3D model for each object separately. The results show that the 3D model obtained through this method is highly detailed and effective for various applications, including environmental studies, urban development, expansion planning, and shape understanding tasks. 展开更多
关键词 World View-3 satellite Image Sketch Up Digital Surface Model 3D Buildings
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Comparative investigation of microstructure and high-temperature oxidation resistance of high-velocity oxy-fuel sprayed CoNiCrAlY/nano-Al_(2)O_(3) composite coatings using satellited powders
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作者 Pejman Zamani Zia Valefi 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第9期1779-1791,共13页
Satellited CoNiCrAlY–Al_(2)O_(3)feedstocks with 2wt%, 4wt%, and 6wt% oxide nanoparticles and pure CoNiCrAlY powder were deposited by the high-velocity oxy fuel process on an Inconel738 superalloy substrate. The oxida... Satellited CoNiCrAlY–Al_(2)O_(3)feedstocks with 2wt%, 4wt%, and 6wt% oxide nanoparticles and pure CoNiCrAlY powder were deposited by the high-velocity oxy fuel process on an Inconel738 superalloy substrate. The oxidation test was performed at 1050℃ for 5, 50, 100,150, 200, and 400 h. The microstructure and phase composition of powders and coatings were characterized by scanning electron microscopy and X-ray diffraction, respectively. The bonding strength of the coatings was also evaluated. The results proved that with the increase in the percentage of nanoparticles(from 2wt% to 6wt%), the amount of porosity(from 1vol% to 4.7vol%), unmelted particles, and roughness of the coatings(from 4.8 to 8.8 μm) increased, and the bonding strength decreased from 71 to 48 MPa. The thicknesses of the thermally grown oxide layer of pure and composite coatings(2wt%, 4wt%, and 6wt%) after 400 h oxidation were measured as 6.5, 5.5, 7.6, and 8.1 μm, respectively.The CoNiCrAlY–2wt% Al_(2)O_(3)coating showed the highest oxidation resistance due to the diffusion barrier effect of well-dispersed nanoparticles. The CoNiCrAlY–6wt% Al_(2)O_(3)coating had the lowest oxidation resistance due to its rough surface morphology and porous microstructure. 展开更多
关键词 MCrAlY coating CoNiCrAlY-Al_(2)O_(3)composite satellited feedstock MICROSTRUCTURE high-temperature oxidation high-velocity oxy-fuel spraying
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The first quantitative remote sensing of ocean internal waves by Chinese GF-3 SAR satellite 被引量:5
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作者 YANG Jingsong WANG Juan REN Lin 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2017年第1期118-118,共1页
Quantitative analysis and retrieval is given by the State Key Laboratory of Satellite Ocean Environment Dynamics(SOED),Second Institute of Oceanography(SIO),State Oceanic Administration(SOA),China,from the first... Quantitative analysis and retrieval is given by the State Key Laboratory of Satellite Ocean Environment Dynamics(SOED),Second Institute of Oceanography(SIO),State Oceanic Administration(SOA),China,from the first batch of GF-3 synthetic aperture radar(SAR)data with ocean internal wave features in the Yellow Sea. 展开更多
关键词 SAR The first quantitative remote sensing of ocean internal waves by Chinese gf-3 SAR satellite GF
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广播星历旋转误差对低轨星载BDS-3/GPS实时精密定轨影响分析
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作者 李敏 王煜斌 +3 位作者 李文文 蒋科材 陈国 赵齐乐 《导航定位与授时》 CSCD 2024年第1期43-52,共10页
基于LT-01A卫星星载BDS-3/GPS观测值进行了星载实时精密定轨研究,并重点分析了广播星历旋转误差对实时定轨精度的影响。通过赫尔默特转换评估了所选时段内GPS和BDS-3广播星历轨道旋转误差,显示BDS-3广播星历旋转误差可达-8.7 mas,平均... 基于LT-01A卫星星载BDS-3/GPS观测值进行了星载实时精密定轨研究,并重点分析了广播星历旋转误差对实时定轨精度的影响。通过赫尔默特转换评估了所选时段内GPS和BDS-3广播星历轨道旋转误差,显示BDS-3广播星历旋转误差可达-8.7 mas,平均量级较GPS大约2.5倍。BDS-3广播星历经旋转改正后,轨道切向、法向均方根(RMS)误差从25 cm左右提升至10 cm量级,提升幅度超过50%。因此,基于星载BDS-3以及BDS-3/GPS联合的实时定轨精度受BDS-3星历旋转误差影响严重,且主要作用于切向和法向。经过旋转改正后,单独BDS-3实时定轨在切向、法向、径向RMS分别为21.0 cm、10.7 cm及11.2 cm,其切向和法向精度比改正前分别提升15.0%和31.8%;BDS-3与GPS联合定轨进一步提升切向精度至19.4 cm。得益于BDS-3广播星历较高的精度,单BDS-3以及BDS-3/GPS联合的实时定轨在旋转改正前的三维RMS分别为31.9 cm和29.2 cm,较单GPS实时定轨分别提升9.1%和16.8%;添加旋转改正后,其定轨精度分别提升至26.7 cm和25.0 cm,较单GPS实时定轨分别提升22.6%和27.5%。 展开更多
关键词 低轨卫星 北斗三号 广播星历 实时精密定轨 旋转误差
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基于国产GF-3雷达影像的农田洪涝遥感监测方法 被引量:2
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作者 阳驰轶 官海翔 +3 位作者 吴玮 刘美玉 李颖 苏伟 《自然资源遥感》 CSCD 北大核心 2023年第4期71-80,共10页
在全球气候变暖背景下,愈发频繁的洪涝灾害是造成我国粮食作物减产的主要农业灾害之一。雷达遥感技术具备全天候的对地观测能力,是快速监测区域范围内洪涝灾害信息的一种重要手段。随着人工智能领域的发展,机器学习方法广泛应用于洪涝... 在全球气候变暖背景下,愈发频繁的洪涝灾害是造成我国粮食作物减产的主要农业灾害之一。雷达遥感技术具备全天候的对地观测能力,是快速监测区域范围内洪涝灾害信息的一种重要手段。随着人工智能领域的发展,机器学习方法广泛应用于洪涝灾害遥感监测,虽然该类算法具有较高的精度,但其训练过程往往需要大量的野外调查或遥感解译样本支持。为克服样本标记限制、提高区域尺度洪涝灾害监测的精度,本研究以2021年7月20日河南北部特大洪涝事件为背景,利用国产高分三号(GF-3)双极化雷达影像(HH-HV),构建了一种基于弱监督高斯混合模型(gaussian mixture model,GMM)的洪涝淹没作物监测方法,通过该方法提取了豫北部分区域农田洪涝淹没范围。通过对比4种典型的机器学习方法,包括随机森林、支持向量机、K最近邻分类和平行六面体方法,发现该文构建的弱监督GMM方法的精度最高,其总体精度为0.95,Kappa系数为0.90。该研究对于提高基于合成孔径雷达(synthetic aperture radar,SAR)遥感技术监测区域尺度作物洪涝的准确性和普适性具有重要意义。 展开更多
关键词 gf-3雷达影像 洪涝 农田洪涝淹没 高斯混合模型
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FY-3 Meteorological Satellites and the Applications 被引量:2
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作者 TANG Yunqiu ZHANG Jiashen WANG Jingsong 《空间科学学报》 CAS CSCD 北大核心 2014年第5期703-709,共7页
FY-3 is the second generation polar-orbiting meteorological satellite of China. The first satellite named FY-3A of this series was launched on 27 May 2008. The first operational satellite named FY-3C of this series wa... FY-3 is the second generation polar-orbiting meteorological satellite of China. The first satellite named FY-3A of this series was launched on 27 May 2008. The first operational satellite named FY-3C of this series was launched on 23 September, 2013. The new generation satellites are to provide three-dimensional, quantitative, multi-spectral global remote sensing data under all weather conditions, which will greatly help the operational numerical weather prediction, global climate change research, climate diagnostics and prediction, and natural disaster monitoring. They will also provide help for many other fields such as agriculture, forestry, oceanography and hydrology. With the above-mentioned capability, the FY-3 satellites can make valuable contributions to improving weather forecasts, global natural-disaster and environmental monitoring. 展开更多
关键词 FY-3 satelliteS Polar-orbiting satellite REMOTE SENSE
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FY-3E:The First Operational Meteorological Satellite Mission in an Early Morning Orbit 被引量:17
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作者 Peng ZHANG Xiuqing HU +5 位作者 Qifeng LU Aijun ZHU Manyun LIN Ling SUN Lin CHEN Na XU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2022年第1期1-8,共8页
Fengyun-3 E(FY-3E),the world’s first early-morning-orbit meteorological satellite for civil use,was launched successfully at the Jiuquan Satellite Launch Center on 5 July 2021.The FY-3E satellite will fill the vacanc... Fengyun-3 E(FY-3E),the world’s first early-morning-orbit meteorological satellite for civil use,was launched successfully at the Jiuquan Satellite Launch Center on 5 July 2021.The FY-3E satellite will fill the vacancy of the global early-morning-orbit satellite observation,working together with the FY-3C and FY-3D satellites to achieve the data coverage of early morning,morning,and afternoon orbits.The combination of these three satellites will provide global data coverage for numerical weather prediction(NWP)at 6-hour intervals,effectively improving the accuracy and time efficiency of global NWP,which is of great significance to perfect the global earth observing system.In this article,the background and meteorological requirements for the early-morning-orbit satellite are reviewed,and the specifications of the FY-3E satellite,as well as the characteristics of the onboard instrumentation for earth observations,are also introduced.In addition,the ground segment and the retrieved geophysical products are also presented.It is believed that the NWP communities will significantly benefit from an optimal temporal distribution of observations provided by the early morning,mid-morning,and afternoon satellite missions.Further benefits are expected in numerous applications such as the monitoring of severe weather/climate events,the development of improved sampling designs of the diurnal cycle for accurate climate data records,more efficient monitoring of air quality by thermal infrared remote sensing,and the quasicontinuous monitoring of the sun for space weather and climate. 展开更多
关键词 FY-3E operational meteorological satellite early morning orbit
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基于改进DeepLabv3+模型的农村道路提取方法研究
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作者 何士俊 肖提荣 夏既胜 《云南大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第3期486-495,共10页
从国产高分辨率影像中快速准确提取农村道路在信息管理、农村农业现代化等领域具有重要的价值,但由于背景噪音复杂、道路蜿蜒细长、易受阴影遮挡等,传统遥感解译方法提取农村道路信息效率低、精度不高.文章针对农村道路的特征,对DeepLab... 从国产高分辨率影像中快速准确提取农村道路在信息管理、农村农业现代化等领域具有重要的价值,但由于背景噪音复杂、道路蜿蜒细长、易受阴影遮挡等,传统遥感解译方法提取农村道路信息效率低、精度不高.文章针对农村道路的特征,对DeepLabv3+模型进行改进,设计了一种兼具效率和精度的高分辨率影像农村道路信息提取改进模型.首先,使用Mobilenetv2作为模型的主干,减少模型的参数;其次,在ASPP模块中串联CBAM,加强模型的特征感受能力;最后,添加Dice Loss函数改进损失函数,克服样本的不均衡.实验结果表明,细节的改进使得各项指标明显提升,效率和精度达到了最高;与经典模型相比,改进模型在MPA、MIoU上取得了更高的分数,虽然对深层特征的深度学习需要花费更多的时间,但改进模型在精度效率上均优于其他模型. 展开更多
关键词 农村道路 gf-2遥感影像 DeepLabv3+模型 深度学习
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Evaluation of the Long-term Performance of Microwave Radiation Imager Onboard Chinese Fengyun Satellites
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作者 Wenying HE Hongbin CHEN +2 位作者 Xiang’ao XIA Shengli WU Peng ZHANG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第7期1257-1268,共12页
Accurate brightness temperature(BT)is a top priority for retrievals of atmospheric and surface parameters.Microwave Radiation Imagers(MWRIs)on Chinese Fengyun-3(FY-3)serial polar-orbiting satellites have been providin... Accurate brightness temperature(BT)is a top priority for retrievals of atmospheric and surface parameters.Microwave Radiation Imagers(MWRIs)on Chinese Fengyun-3(FY-3)serial polar-orbiting satellites have been providing abundant BT data since 2008.Much work has been done to evaluate short-term MWRI observations,but the long-term performance of MWRIs remains unclear.In this study,operational MWRI BTs from 2012–19 were carefully examined by using simultaneous Advanced Microwave Scanning Radiometer 2(AMSR2)BTs as the reference.The BT difference between MWRI/FY3B and AMSR2 during 2012–19 increased gradually over time.As compared with MWRI/FY3B BTs over land,those of MWRI/FY3D were much closer to those of AMSR2.The ascending and descending orbit difference for MWRI/FY3D is also much smaller than that for MWRI/FY3B.These results suggested the improvement of MWRI/FY3D over MWRI/FY3B.A substantial BT difference between AMSR2 and MWRI was found over water,especially at the vertical polarization channels.A similar BT difference was found over polar water based on the simultaneous conical overpassing(SCO)method.Radiative transfer model simulations suggested that the substantial BT differences at the vertical polarization channels of MWRI and AMSR2 over water were partly contributed by their difference in the incident angle;however,the underestimation of the operational MWRI BT over water remained a very important issue.Preliminary assessment of the operational and recalibrated MWRI BT demonstrated that MWRI BTs were substantially improved after the recalibration,including the obvious underestimation of the operational MWRI BT at the vertical polarization channels over water was corrected,and the time-dependent biases were reduced. 展开更多
关键词 FY-3 satellites MWRI AMSR2 brightness temperature RECALIBRATION
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FY-3A SATELLITE MICROWAVE DATA ASSIMILATION EXPERIMENTS IN TROPICAL CYCLONE FORECAST 被引量:2
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作者 杨引明 杜明斌 张洁 《Journal of Tropical Meteorology》 SCIE 2013年第3期297-304,共8页
China's new generation of polar-orbiting meteorological satellite FY-3A was successfully launched on May 26,2008,carrying microwave sounding devices which had similar performance to ATOVS of NOAA series.In order t... China's new generation of polar-orbiting meteorological satellite FY-3A was successfully launched on May 26,2008,carrying microwave sounding devices which had similar performance to ATOVS of NOAA series.In order to study the application of microwave sounding data in numerical prediction of typhoons and to improve typhoon forecasting,we assimilated data directly for numerical forecasting of the track and intensity of the 2009 typhoon Morakot(0908)based on the WRF-3DVar system.Results showed that the initial fields of the numerical model due to direct assimilation of FY-3A microwave sounding data was improved much more than that due to assimilation of conventional observations alone,and the improvement was especially significant over the ocean,which is always without conventional observations.The model initial fields were more reasonable in reflecting the initial situation of typhoon circulation as well as temperature and humidity conditions,and typhoon central position at sea was also adjusted.Through direct 3DVar assimilation of FY-3A microwave data,the regional mesoscale model improves the forecasting of typhoon track.Therefore,the FY-3A microwave data could efficiently improve the numerical prediction of typhoons. 展开更多
关键词 satellite data ASSIMILATION FY-3A microwave SOUNDING typhoon Morakot 3DVAR
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Assimilation of Feng-Yun-3B Satellite Microwave Humidity Sounder Data over Land 被引量:2
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作者 Keyi CHEN Niels BORMANN +1 位作者 Stephen ENGLISH Jiang ZHU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第3期268-275,共8页
The ECMWF has been assimilating Feng-Yun-3B (FY-3B) satellite microwave humidity sounder (MWHS) data over ocean in an operational forecasting system since 24 September 2014, It is more difficult, however, to assim... The ECMWF has been assimilating Feng-Yun-3B (FY-3B) satellite microwave humidity sounder (MWHS) data over ocean in an operational forecasting system since 24 September 2014, It is more difficult, however, to assimilate microwave observations over land and sea ice than over the open ocean due to higher uncertainties in land surface temperature, surface emissivity and less effective cloud screening. We compare approaches in which the emissivity is retrieved dynamically from MWHS channel l [150 GHz (vertical polarization)] with the use of an evolving emissivity atlas from 89 GHz observations from the MWHS onboard NOAA and EUMETSAT satellites. The assimilation of the additional data over land improves the fit of short-range forecasts to other observations, notably ATMS (Advanced Technology Microwave Sounder) humidity channels, and the forecast impacts are mainly neutral to slightly positive over the first five days. The forecast impacts are better in boreal summer and the Southern Hemisphere. These results suggest that the techniques tested allow for effective assimilation of MWHS/FY-3B data over land. 展开更多
关键词 data assimilation over land Chinese satellite FY-3B Microwave Humidity Sounder
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BDS-3新频点信号双频精密单点定位精度分析
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作者 卢福康 余学祥 +1 位作者 肖星星 胡富杰 《天文学报》 CAS CSCD 北大核心 2024年第1期19-30,共12页
北斗卫星导航系统(BeiDou navigation satellite System,BDS)已于2020年7月正式建成并开通,北斗三号(BDS-3)在旧信号B1I和B3I的基础上,增加了B1C、B2a新信号.为了全面评估BDS-3的新信号B1C、B2a的定位性能,试验了GPS (Global Positionin... 北斗卫星导航系统(BeiDou navigation satellite System,BDS)已于2020年7月正式建成并开通,北斗三号(BDS-3)在旧信号B1I和B3I的基础上,增加了B1C、B2a新信号.为了全面评估BDS-3的新信号B1C、B2a的定位性能,试验了GPS (Global Positioning System)、BDS-3、BDS-2/BDS-3新旧信号的定位性能和BDS系统不同频点与GPS组合定位性能,对BDS (B1I+B3I、B1C/B2a)+GPS (L1+L2)组合静态PPP (Precise Point Positioning)定位性能进行分析,并与单卫星系统对比分析.试验结果表明:BDS-3 (B1C/B2a)在East (E)、North (N)、Up (U)方向的定位精度优于1.25 cm、0.89 cm、1.67 cm,BDS-3新旧频点在E、N方向上定位精度与GPS L1/L2在同一水平上,U方向上新频点定位精度高于GPS L1/L2和BDS-3旧频点,较旧频点定位精度提升了34.2%,新频点收敛时间25.9 min比旧频点提升了12.7%;相较于BDS、GPS单系统,组合系统BDS/GPS定位精度和收敛时间有了明显的提高,BDS-3 (B1C/B2a)+GPS在E、N方向上与BDS-3 (B1I/B3I)+GPS定位精度相当,在U方向上定位精度前者较后者有了明显的提升,提升了17.2%,组合系统新频点收敛时间20.1 min比旧频点提升了17.6%. 展开更多
关键词 卫星定位 PPP BDS-3 BDS-2/BDS-3 BDS/GPS 定位精度 收敛时间
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基于GF-7立体影像的南极1∶10000比例尺3D产品生产研究
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作者 齐忠华 刘沼辉 杨柏宇 《测绘与空间地理信息》 2023年第5期199-201,205,共4页
针对南极利用高空间分辨率遥感影像进行数字地形图生产,具有航空摄影测量、全野外数字测图等方法所不具备的大范围、短周期和低成本等优势。本文以南极恩克斯堡岛和北山麓区域为实验区,采用国产GF-7立体影像进行南极1∶10000比例尺地形... 针对南极利用高空间分辨率遥感影像进行数字地形图生产,具有航空摄影测量、全野外数字测图等方法所不具备的大范围、短周期和低成本等优势。本文以南极恩克斯堡岛和北山麓区域为实验区,采用国产GF-7立体影像进行南极1∶10000比例尺地形图生产实验,形成了一套生产技术流程方案,并对生产技术流程方案进行精度检测,验证了该技术流程在南极1∶10000比例尺3D产品生产的可行性。最后对利用GF-7号立体影像进行南极1∶10000比例尺地形图产品生产存在的问题进行了简要论述,为后续南极利用GF-7进行大范围1∶10000比例尺地形图3D产品生产提供参考。 展开更多
关键词 gf-7 立体测图 南极 3D产品
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