杜文英,女,武汉大学影相测量与遥感专科工学博士,现任副解释,硕士生导师。
主要从事对地不雅测传感网与颖慧流域表面与要害策动,致力于收尾洪涝经过趋奉监测与颖慧城市洪涝灾害济急反应哄骗。主要策动责任包括洪涝经过监测与分析表面与要害策动、洪涝学问图谱构建要害策动等。
连年来主合手步地5项,并行为中枢主干成员参与国度重心研发筹备、973筹备和863筹备等多个步地;发达制定外洋电信定约ITU-T颖慧城市外洋程序3项以及增补程序1项,在国表里发表学术论文二十余篇,其中SCI论文17篇;授权国度专利4项,登记软件著述权3项。
招买卖向:
1、接待来自资源与环境、电子信息、地舆信息系统、测绘、贪图机、哄骗数学等相关专科的学生报考;
2、凭据学生的作事/不时深造需求,制定各别化培养决策;
3、提供有竞争力的科研补贴,优秀学生有突出奖励。
步地履历:
国度重心研发筹备子课题发达东谈主1项,主合手中国博士后科学基金面上步地1项,武汉大学自主科研步地1项,长江水利委员会长江科学院绽放基金1项,武汉大学测绘遥感信息工程国度重心试验室自主科研步地1项,行为主干参与国度重心研发筹备1项,国度重心基础策动发展筹备(973筹备)1项,国度高时间策动发展筹备(863筹备)1项,其他步地2项。
国产欧美综合系列在线1、国度重心研发筹备课题,2018YFB2100501,城市多程序概述感知共性体系与无缝感知时间,2019/07-2022/07,1317.00万元(个东谈主经费60.00万元),在研,子课题发达东谈主
2、武汉大学自主科研后生磨真金不怕火资助步地,2042020kf0011,城市暴雨内涝经过监测与定量分析要害策动,2020/01-2021/12,12.00万元,在研,主合手
3、长江水利委员会长江科学院绽放基金,CKWV2018487/KY,基于传感网的洪涝事件探伤模子与服务要害策动,2018/07-2020/07,3.00万元,已结题,主合手
4、国度重心研发筹备课题,2017YFB0503803,城市群地质环境演化多源遥感监测与预警,2017/07-2021/06,575.00万元,在研,主干
5、中国博士后科学基金面上资助步地,2017M622502,传感网环境下洪涝事件的主动探伤与按需服务,2017/11-2019/03,5.00万元,已结题,主合手
6、武汉大学测绘遥感信息工程国度重心试验室自主科研步地,传感网环境下洪涝事件经过探伤与主动服务要害策动,2018/01-2018/12,5.00万元,已结题,主合手
7、国度重心基础策动发展973筹备,2011CB707101,对地不雅测传感网耦合模子与建模表面,2011/01-2015/12,445.00万元,已结题,投入
8、国度高时间策动发展筹备(863筹备)课题,2013AA01A608,城市信息多档次智能决策时间与系统,2013/01-2015/12,401.00万元,已结题,投入
学术效果:
发表论文24篇,其中一作/通信论文12篇(地大T1论文2篇,T2论文4篇,T3论文3篇,T4论文3篇),授权发明专利4项,登记软件著述权3项,参与编写《对地不雅测传感网信息服务的模子与要害》和《颖慧城市概述解决》等学术专著2部。
[1] Chen N., Zhang Y.*, Du W.*, Li Y., Chen M., Zheng X. KE-CNN: A new social sensing method for extracting geographical attributes from text semantic features and its application in Wuhan, China. Computers, Environment and Urban Systems. https://doi.org/10.1016/j.compenvurbsys.2021.101629.
[2] Zhang Y., Chen N., Du W.*, Li Y., Zheng X. Multi-source sensor based urban habitat and resident health sensing: A case study of Wuhan, China. Building and Environment. https://doi.org/10.1016/j.buildenv.2021.107883.
[3] Du W., Chen N.*, Yuan S., Wang C., Huang M., Shen H. Sensor Web - Enabled Flood Event Process Detection and Instant Service. Environmental Modelling & Software. 2019, 117: 29-42.
[4] Du W., Chen N.*, Liu D. Topology Adaptive Water Boundary Extraction based on a Modified Balloon Snake using GF-1 Satellite Images as an Example. Remote Sensing. 2017, 9(2): 140-165.
[5] Du W., Chen N.*, Liu D. Automatic Balloon Snake Method for Topology Adaptive Water Boundary Extraction: using GF-1 Satellite Imagery as an Example. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2017, 10(12): 5381-5394.
[6] Zhang Y., Chen N., Du W.*, Yao S., Zheng X. A New Geo-Propagation Model of Event Evolution Chain Based on Public Opinion and Epidemic Coupling. International Journal of Environmental Research and Public Health, 2020, 17(24), 9235.
[7] Du W., Chen N.*, Yan S. Online Soil Moisture Retrieval and Sharing using geospatial Web-Enabled BDS-R Service. Computers and Electronics in Agriculture. 2016, 121(2): 354-367.
[8] Huang M., Chen N., Du W.*, Wen M., Zhu D., Gong J. A novel two-step scheme for mapping large-area high resolution impervious surface derived by free medium resolution imagery and fewer high resolution imagery. GIScience & Remote Sensing. https://doi.org/10.1080/15481603.2021.1909304.
[9] Yao S., Chen N., Du W.*, Wang C., Chen C. A cellular automata model for rapid and accurate flood inundation simulation at the urban neighborhood scale. Water Resources Management. https://doi.org/10.1007/s11269-021-02826-2.
[10] Liu Y., Du W.*, Chen N., Wang X. Construction and Evaluation of the Integrated Perception Ecological Environment Indicator (IPEEI) Based on the DPSIR Framework for Smart Sustainable Cities. Sustainability, 2020, 12(17): 1-25.
[11] Chen, N., Yang M., Du W.*, Huang M. PM2.5 Estimation and Spatial-Temporal Pattern Analysis Based on the Modified Support Vector Regression Model and the 1 km Resolution MAIAC AOD in Hubei, China. ISPRS International Journal of Geo-Information. 2021, 10(1), 31.
[12] 杜文英, 陈能成*, 袁赛.传感网解救下的洪涝事件经过监测与准及时服务要害及考据.测绘学报, 2020, 49(2): 191-201.
[13] Chen, N.*, Du W., Song F., Chen Z. FLCNDEMF: An Event Metamodel for Flood Process Information Management under the Sensor Web Environment. Remote Sensing. 2015, 7(6): 7231-7256.
[14] Liu D., Chen N., Zhang X., Wang C., Du W. Annual large-scale urban land mapping based on Landsat time series in Google Earth Engine and OpenStreetMap data: A case study in the middle Yangtze River basin. ISPRS Journal of Photogrammetry and Remote Sensing, 2020, 159, 337-351.
[15] Huang, M., Chen, N.*, Du W., Chen, Z., Gong, J. DMBLC: An Indirect Urban Impervious Surface Area Extraction Approach by Detecting and Masking Background Land Cover on Google Earth Image. Remote Sensing. 2018, 10(5), 766.
[16] Chen, Z., Chen, N.*, Du W., Gong, J. An Active Monitoring Method for Flood Events. Computers & Geosciences. 2018, 116: 42-52.
[17] Chen N., Yao S., Wang C., Du W. A Method for Urban Flood Risk Assessment and Zoning Considering Road Environments and Terrain. Sustainability, 2019, 11(10), 2734.
[18] Chen, N., Xiong, C., Du, W., Wang, C., Chen, Z. An improved genetic algorithm coupling a back-propagation neural network model (IGA-BPNN) for water-level predictions. Water, 2019, 11(9), 1795.
[19] Chen, N. and Du W. Spatial-Temporal based Integrated Management for Smart City: Framework, Key techniques and Implementation. The 23rd International Conference on Geoinformatics, Wuhan, China, 19-21 June 2015.
[20] Chen N., Pu F., Hu C., Zhang X., Du W., Zhang L. Scientific Issues and Progress of the Chinese Integrated Earth Observation Sensor Web Project. In proceedings of 2013 IEEE International Conference on Systems, Man, and Cybernetics. 2013, 1058-1062.
[21] 陈能成, 刘丹丹, 杜文英. 纠正Balloon Snake算法提真金不怕火遥感影像水体范围. 遥感学报, 2017, 03: 425-433.
[22] 陈泽强, 陈能成, 杜文英, 宋凡.一种洪涝灾害事件信息建模要害. 地球信息科学学报, 2015, 17(6): 644-652.
[23] 陈能成, 么爽, 杜文英, 王超. 纠正蚁群算法解救下的交通流量分拨. 测绘通报, 2019, (10) : 72-76.
[24] 袁赛, 陈能成, 肖长江, 杜文英, 王凯. 存算永诀的原位传感器不雅测接入要害. 贪图机系统哄骗, 2017, 26(7): 90-96.