电子邮件: lixw@aircas.ac.cn
通信地址: 北京市海淀区邓庄南路9号
邮政编码: 100094
个人简历
李新武,男,现为中国科学院空天信息创新研究院研究员/博导。主要研究领域为先进SAR遥感、生态环境遥感和极地环境遥感。2007年-2009年分别在加拿大遥感中心(CCRS)和法国雷恩第一大学学习。2019年入选“海南省南海名家”培育计划及海南省高层次领军人才。在极化干涉SAR、层析成像SAR和超高分SAR信息处理及应用,极地冰川水文与植被生态遥感和全球森林生态遥感模型及信息服务平台研发方面取得系列高水平成果。在National Science Review、The Innovation、Nature Communications、Science Bulletin、TGRS和BAMES等期刊发表SCI论文76篇(一作/通讯48篇);合著《冰冻圈遥感学》、《新型SAR地球环境观测》中英文版、《地球三极:全球变化的前哨》、《地球三极:脆弱环境下可持续发展的挑战》和《Remote Sensing Time Series: Revealing Land Surface Dynamics》等专著10余部;相关成果荣获联合国全球脉动奖、北京市科学技术奖(基础类)一等奖、海南省科学技术进步一等奖和西藏自治区科技进步一等奖各1项;“三极可持续发展空间观测与科学认知”成果入选2025年度中国地理学会十大研究进展;协助编写完成“科技助力丝绸之路经济带建设”等咨询研究报告4份,并获国家领导人和省部级领导批示。现担任DBAR国际科学计划环境变化工作组(DBAR-Envi)联合主席,ISDE中国国家委员会数字极地专业委员会副主任委员,CARSA生态气象遥感专委会副主任委员和中国遥感应用协会雷达遥感专业委员会常务委员。
招生信息
招生专业
招生方向
SAR智能遥感、植被生态遥感、极地冰川遥感和数字可持续发展
工作经历
工作简历
社会兼职
2025-04-01-今,喀什地区科协兼职副主席,
2023-05-01-今,中国遥感应用协会雷达遥感专业委员会常务委员,
2021-05-01-今,CARSA生态气象遥感专委会副主任委员,
2021-05-01-今,国际数字地球学会中国国家委员会数字极地专业委员会副主任委员,
教授课程
专利与奖励
受理或授权专利:
(1)南极半岛高分辨率优化地衣覆盖度指数,已授权
(2)基于多类谱的超高分辨率SAR影像分类方法,已授权
(3)一种全球通用植被总初级生产力遥感指数估算方法,已授权
(4)基于多尺度卷积和注意力机制的海南自然保护区遥感图像分类模型,已授权
(5)一种植被的光保护触发阈值估计方法及装置,已受理
(6)一种小尺度生态系统服务功能价值空间核算方法及装置,已受理
人才计划与奖励荣誉:
(1)海南省南海名家
(2)海南省高层次领军人才
(3)联合国全球脉动奖、
(4)北京市科学技术奖(基础类)一等奖、
(5)海南省科学技术进步一等奖
(6)西藏自治区科技进步一等奖
出版信息
代表性论文:
[1] Wenxue Fu, Xin Cui and Xinwu Li,Forest Leaf Area Index Inversion Method by C- and L-band Dual-frequency Polarimetric Inerferometric SAR,DOI:10.1109/JSTARS.2026.3698420
[2] Wenjin Wu, Alatanzhula, Guillermo Martínez Pastur, Eduardo Olivero, Yuhan Xie, Li Xinwu*, Guo Huadong, 2026. The overlooked dark-colored lichens: Blind spots in Antarctic vegetation mapping with remote sensing. The Innovation, 7(2): 101122, doi:10.1016/j.xinn.2025.101122.
[3] Xie Yuhan, Wu Wenjin*, Li Xinwu*, Shi Jiankang, Xu Sheng, O’Hara Bob, Mei Linlu, 2025. LCTEG: A Spatiotemporal Deep Learning Model for Tropical Forest Growth Prediction. IEEE Transactions on Geoscience and Remote Sensing, 63: 4420917, doi:10.1109/TGRS.2025.3625729.
[4] Li Xin, Guo Huadong, Cheng Guodong, Song Xiaoyu, Ran Youhua, Feng Ming, Che Tao, Li Xinwu, Wang Lei, Duan Anmin, Shangguan Donghui et al., 2025. Polar regions are critical in achieving global sustainable development goals. Nature Communications, 16(1): 3879, doi:10.1038/s41467-025-59178-3
[5] Wu Wenjin, Epstein Howard, Xu Xiyan, Li Xinwu*, Guo Huadong*, Li Jinfeng, 2024. Radiative trigger thresholds of foliar photoprotective pigment regulation for global vegetation. The Innovation, 5(4): 100649, doi:10.1016/j.xinn.2024.100649.
[6] Alatan Zhula, Wu Wenjin*, Li Xinwu*, Zhao Liqing, Guo Huadong, Li Jinfeng, Hao Chengzhi, 2024. A geospatial dataset of lichen key attributes in the Earth’s three poles. Scientific Data, 11: 1248, doi:10.1038/s41597-024-04072-8.
[7] Lei Liang, Huadong Guo, Shuang Liang, Xichen Li, John C. Moore*, Xinwu Li*, Xiao Cheng, Wenjin Wu, Yan Liu, Annette Rinke, Gensuo Jia, Feifei Pan and Chen Gong, Delayed Antarctic melt season reduces albedo feedback,National Science Review, 10: nwad157, 2023,https://doi.org/10.1093/nsr/nwad157,Advance access publication 27 May 202.
[8] Yang B, Liang S, Guo H, Li Xinwu* et al. Suitability analysis of human activities over Antarctic ice shelves: an integrated assessment of natural conditions based on machine learning algorithms. International Journal of Digital Earth, 2023, 16(2): 4906-4928.
[9] Jiang, Di, Xinwu Li*, Ke Zhang, Sebastián Marinsek, Wen Hong, and Yirong Wu. 2022. Automatic Supraglacial Lake Extraction in Greenland Using Sentinel-1 SAR Images and Attention-Based U-Net,Remote Sensing 14, no. 19: 4998. https://doi.org/10.3390/rs14194998
[10] Youjun Wang, Xing Peng, Qinghua Xie, Xinwu Li, Xiaomin Luo et al., Underlying topography and forest height estimation from SAR tomography based on a nonparametric spectrum estimation method with low sidelobes, International Journal of Digital Earth, 2022, VOL. 15, NO. 1, 2184–2201https://doi.org/10.1080/17538947.2022.2153939
[11] Zhao J, Liang S, Li X*, et al. Detection of Surface Crevasses over Antarctic Ice Shelves Using SAR Imagery and Deep Learning Method. Remote Sensing, 2022, 14(3): 487.
[12] Wu, W., Epstein, H. E., Guo, H., Li, X. *, et al. A pigment ratio index based on remotely sensed reflectance provides the potential for universal gross primary production estimation. Environmental Research Letters, 2021, 16(5), 054065.
[13] Sun, X., Wu, W., Li, X., et al. (2021). Vegetation Abundance and Health Mapping Over Southwestern Antarctica Based on WorldView-2 Data and a Modified Spectral Mixture Analysis. Remote Sensing,2021, 13(2), 166.
[14] Xing Peng, Xinwu Li, Yanan Du, Qinghua Xie. Forest Height Estimation from a Robust TomoSAR Method in the Case of Small Tomographic Aperture with Airborne Dataset at L-Band. Remote Sensing, 2021, 13(11), 2147.
[15] Guo Huadong, Li Xinwu*, Qiu Yubao*. Comparison of global change at the Earth’s three poles using spaceborne Earth observation. Science Bulletin, 2020, 65(16):1320-1323.
[16] Wu, Wenjin, Sun Xiaohui, Epstein Howard, Xu Xiyan., and Li Xinwu,Spatial Heterogeneity of Climate Variation and Vegetation Response for Arctic and High-Elevation Regions from 2001-2018, Environmental Research Communications, 2020, 2(1).
[17] Liang Lei, Li Xinwu*, Zheng Fei. Spatio-Temporal Analysis of Ice Sheet Snowmelt in Antarctica and Greenland Using Microwave Radiometer Data. Remote Sensing, 2019, 11(16):1838.
[18] Wu Wenjin, Gong Chen, Li Xinwu*, Guo Huadong and Zhang Lu, An Online Deep Convolutional Model of Gross Primary Productivity and Net Ecosystem Exchange Estimation for Global Forests, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2019, 12(2): 5178-5188.
[19] Xing Peng, Xinwu Li*, Changcheng Wang et al., SPICE-based SAR Tomography over Forest Areas Using a Small Number of P-band Airborne F-SAR Dataset Characterized by Non-uniformly Distributed Baselines. Remote Sensing, 2019,11(8):975.
[20] Wenjin Wu, Hailei Li, Lu Zhang, Xinwu Li*, and Huadong Guo. High-Resolution PolSAR Scene Classification With Pretrained Deep Convnets and Manifold Polarimetric Parameters[J]. IEEE Transactions on Geoscience and Remote Sensing, 2018:1-10.
[21] Lei Liang, Xinwu Li*, Laurent Ferro-Famil, Huadong Guo, Lu Zhang and Wenjin Wu, Urban area tomography using a sparse representation based Two-Dimensional spectral analysis technique, Remote Sensing, 2018, 10(2):109. doi:10.3390/rs10010109
[22] Xingdong Wang, Xinwu Li*, Cheng Wang, Xinguang Li, Antarctic ice-sheet near-surface snowmelt detection based on the synergy of SSM/I data and QuikSCAT data, Geoscience Frontiers, https://doi.org/10.1016/j.gsf.2017.09.007, 2017
[23] Xinwu Li,Wenjin Wu,Baiqing Xu,Siyang Yin,Ruifang Yang,Shu Cheng,Reflectance–Elevation Relationships and Their Seasonal Patterns over Twelve Glaciers in Western China Based on Landsat 8 Data,remote sensing,2017.02.01
[24] Huadong Guo, Jie Chen, Xinwu Li, Lu Zhang, Wenjin Wu et al., Research on SAR data integrated processing methodology oriented on earth environment factor inversions, International Journal of Digital Earth, doi:10.1080/17538947.2016.1275831. 2017
[25] Fu Wenxue, Guo Huadong, Li Xinwu*, Tian Bangsen, Sun Zhongchang, Extended Three-Stage Polarimetric SAR Interferometry Algorithm by Dual-Polarization Data, IEEE Transactions on Geoscience and Remote Sensing, 2016, Vol.54, No: 5, pp: 2792-2802
[26] Xinwu Li,Lu Zhang,Liyan Wang,Xiangxing Wan,Effects of BOW model with Affinity Propagation and Spatial Pyramid Matching on Polarimetric SAR Image Classification,IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,2016.01.01
[27] Li Xinwu, Liang Lei, Guo Huadong, Huang Yue. Compressive Sensing for Multibaseline Polarimetric SAR Tomography of Forested Areas, IEEE Transactions on Geoscience and Remote Sensing2016, 54(1): 153-166.
[28] Wu Wenjin, Guo Huadong, Li Xinwu*, Laurent Ferro-Famil, Zhang Lu. Urban land use information extraction using the ultrahigh-resolution Chinese airborne SAR imagery. IEEE Transactions on Geoscience and Remote Sensing, 2015, 53(10): 5583-5599.
[29] Wu Wenjin, Guo Huadong, Li Xinwu*. Urban Area SAR Image Man-Made Target Extraction Based on the Product Model and the Time–Frequency Analysis. , IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2015, 8(3): 943-952.
[30] Liang Lei, Guo Huadong, Li Xinwu*. Three-Dimensional Structural Parameter Inversion of Buildings by Distributed Compressive Sensing-Based Polarimetric SAR Tomography Using a Small Number of Baselines, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 2014, 7(10): 4218-4230.
[31] Guo Huadong, Fu Wenxue, Li Xinwu, Chen Pei et al., Research on global change scientific satellites. Science China Earth Sciences, 2014, 57(2): 204-215.
[32] Guo Huadong, Yang Huaining, Sun Zhongchang, Li Xinwu, Wang Cuizhen. Synergistic use of optical and PolSAR imagery for urban impervious surface estimation. Photogrammetric Engineering & Remote Sensing, 2014, 80(1): 91-102.
[33] Wu Wenjin,Guo Huadong,Li Xinwu*,Urban Area Man-Made Target Detection for PolSAR Data Based on a Nonzero-Mean Statistical Model,IEEE Geoscience and Remote Sensing Letters,2014.01.01,11(10):1782~1786.
[34] Liang Lei, Guo, Huadong, Li Xinwu*, Cheng Xiao. Automated ice-sheet snowmelt detection using microwave radiometer measurements[J]. Polar Research, 2013, 32.
[35] Wu Wenjin, Guo Huadong, Li Xinwu*. Man-made target detection in urban areas based on a new azimuth stationarity extraction method. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2013, 6(3): 1138-1146.
[36] Li Xinwu, Guo Huadong, Zhang Lu, Cheng Xiao, Liang Lei. A new approach to collapsed building extraction using RADARSAT-2 polarimetric SAR imagery. IEEE Geoscience and Remote Sensing Letters,2012, 9(4): 677-681.
[37] Li Xinwu,Pottier Eric,Guo Huadong,Ferro-Famil Laurent,Urban Land Cover Classification with High-Resolution Polarimetric SAR Interferometric Data,Canadian Journal of Remote Sensing,2010.01.01,36(3):236~247
[38] Li Xinwu, Guo Hua don g, and Wang CL,” DEM generation in the densely vegetated area of Hotan, north-west China using SIR-C repeat pass polarimetric SAR interferometry”, INT ERNAT IONAL JOURNAL OF REMOTE SENSING, vol. 24, no.14, 2003.
代表性著作
代表性科研项目
(1)中欧生物多样性联合观测示范平台构建,专题负责人,国家任务,2025.01-2029.12
(2)中吉乌区域可持续发展遥感评估与能力建设,专题负责人,地方任务,2026.01-2028.12
(3)空天大数据资源环境应用关键技术研究,负责人,地方任务,2025.04-2027.04
(4)安徽省第五次生态状况变化调查评估项目,负责人,地方任务,2025.06-2026.09
(5)冰川表面次表面典型水文特征SAR高精度探测方法研究, 负责人, 国家任务, 2023.01-2026.12
(6)泛南极生态与环境空间观测及三极对比研究, 负责人, 中国科学院, 2021.01-2023.12
(7)三极生态变化科学认知与SDG指标评估方法研究, 负责人, 自主部署, 2022.01-2024.08
(8)鄂尔多斯高原天-空-地一体化荒漠化大数据平台构建, 负责人, 地方任务, 2020.11-2022.12
(9)三极气候环境变化协同对比与大数据关键技术研究, 参与, 国家任务, 2020.01-2022.12
(10)海南省自然保护区生态空间遥感监测与信息服务平台, 负责人, 地方任务, 2019.01-2020.12
(11)遥感三极:协同与对比, 负责人, 中国科学院,2018.01-2022.12
(12)层析SAR典型地物三维结构参数反演模型与方法研究, 负责人, 国家任务, 2016.01-2019.12
(13)SAR信息一体化处理与环境参数反演, 参与, 国家任务, 2012.01-2016.12
(14)全球环境变化遥感对比研究计划(ABCC计划), 参与, 国家任务, 2012.01-2016.12
(15)中亚地区环境变化与自然资源遥感监测技术和应用, 负责人, 国家任务, 2012.01-2014.12
(16)主被动微波遥感南极冰盖冻融探测方法与应用研究, 负责人, 国家任务, 2011.01-2013.12
(17)航空遥感系统验证实验, 参与, 国家任务, 2010.06-2014.11
(18)南极冰盖冻融变化探测技术研究, 负责人, 国家任务, 2009.01-2011.12
(19)多平台遥感观测科学实验与环境信息模拟, 参与, 国家任务, 2009.01-2012.12
(20)极化干涉干涉SAR植被覆盖区土壤水分反演, 负责人, 国家任务, 2006.01-2008.12
国际合作情况
法国雷恩第一大学、意大利米兰理工大学、加拿大遥感中心、智利大学、阿根廷火地岛大学、阿根廷科学研究理事会南方研究中心、哈萨克斯坦国立空间技术科学研究中心、乌兹别克斯坦塔什干国立研究大学、德国宇航中心
自主指导学生
已指导学生
王蒙 硕士研究生 085215-测绘工程
张焱 硕士研究生 070503-地图学与地理信息系统
尹思阳 硕士研究生 085215-测绘工程
宫晨 硕士研究生 085215-测绘工程
孙晓慧 硕士研究生 085215-测绘工程
于桐 硕士研究生 070503-地图学与地理信息系统
赵京京 硕士研究生 070503-地图学与地理信息系统
杨博锦 博士研究生 070503-地图学与地理信息系统
谢雨涵 博士研究生 070503-地图学与地理信息系统
李冠宇 硕士研究生 070503-地图学与地理信息系统
姜逸宸 硕士研究生 070503-地图学与地理信息系统
谢青源 硕士研究生 085700-资源与环境
何依蔓 硕士研究生 085700-资源与环境
现指导学生
李泽源 博士研究生 070503-地图学与地理信息系统
贾龙 博士研究生 070503-地图学与地理信息系统
张艺璇 博士研究生 070503-地图学与地理信息系统
李默涵 博士研究生 070503-地图学与地理信息系统
徐亮亮 硕士研究生 070503-地图学与地理信息系统
联合指导学生
阿拉坦主拉,内蒙古大学,博士,生态环境,2019-09-01-至今
刘宁,中科院空天信息创新研究院,博士,环境雷达遥感,2018-09-01-至今
蒋迪,中科院空天信息创新研究院,博士,环境雷达遥感,2019-09-01-至今
彭星,中南大学,博士,地球与空间探测技术,2015-09-01-2018-07-01
王景凯,中科院遥感与数字地球研究所,硕士,地图学与地理信息系统,2012-09-01-2015-07-01
粱雷,中科院遥感与数字地球研究所,博士,地图学与地理信息系统,2011-09-01-2015-07-01
吴文瑾,中科院遥感与数字地球研究所,博士,地图学与地理信息系统,2011-09-01-2015-07-01
王星东,中南大学,博士,地球与空间探测技术,2010-09-01-2013-07-01
黄庆妮,中科院对地观测与数字地球科学中心,博士,地图学与地理信息系统,2009-09-01-2011-07-01
孙中昶,中科院对地观测与数字地球科学中心,博士,地图学与地理信息系统,2009-09-01-2011-07-01