个人简介
教育经历 2009 - 2013 年,武汉大学卫星导航定位技术研究中心,攻读博士学位 2011 - 2012 年,北京大学地球与空间科学学院,客座博士生 2012 - 2013 年,英国格拉斯哥大学地理与地球科学学院,联合培养博士生 工作经历 2013 - 2015 年,武汉大学测绘学院,助理研究员 / 固体地球物理学博士后 2015 - 2019 年,中国海洋大学海洋地球科学学院,讲师 / 海洋地质博士后 2019 - 2020 年,英国纽卡斯尔大学工程学院,访问学者 2022 - 至今,中国海洋大学海洋地球科学学院,副教授 / 硕导
研究领域
河口海岸带与海洋环境遥感:运用 SAR、激光雷达、多光谱、高光谱等遥感技术,对河口海岸带和海洋环境进行监测和研究,如监测水体变化、生态环境演变等。 时序 InSAR 与海岸沉降:利用时序 InSAR 技术监测海岸地区的地面沉降情况,分析沉降的原因、规律和趋势。 潮滩湿地与盐沼生态:研究潮滩湿地和盐沼生态系统的特征、演变以及与环境因素的相互关系,通过遥感技术实现对其的动态监测和评估。 动力地貌与流域水文:探究动力地貌过程(如河流、海洋动力作用下的地貌变化)和流域水文特征,借助测绘遥感地理信息、大数据等手段进行分析和研究 。
近期论文
[1] H. Wang*, X. Wu, N. Bi, and P. Li (2024), Chapter 16: The Yellow River Delta, in Book: Delta Sustainability (A Report to the Mega-Delta Programme of the UN Ocean Decade), Springer Nature Singapore Pte Ltd. 2024, ISBN: 978-981-97-7258-2, doi: https://doi.org/10.1007/978-981-97-7259-9_16 [2] P. Li, S. Li*, Z. Li, C. Liang, and H. Wang (2024), Detailed Detection and Extraction of Estuarine Tidal Channels with Multispectral and Full-Polarised SAR Remote Sensing, Earth Surface Processes and Landforms, 49(12): 3968-3988. 【Q2】 [3] B. Huang, P. Li*, H. Lu, J. Yin, Z. Li, and H. Wang (2024), WaterDetectionNet: A New Deep Learning Method for Flood Mapping with SAR Image Convolutional Neural Network, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 17, 14471-14485. 【Q2 TOP】(本科生一作) [4] P. Li, Y. Zhang, C. Liang, H. Wang*, and Z. Li (2024), High Spatiotemporal Resolution River Networks Mapping on Catchment Scale Using Satellite Remote Sensing Imagery and DEM Data, Geophysical Research Letter, 51(6): e2023GL107956. 【Q1 TOP】 [5] G. Wang, P. Li*, Z. Li, J. Liu, Y. Zhang, and H. Wang (2024), InSAR and Machine Learning Reveal New Understanding of Coastal Subsidence Risk in the Yellow River Delta, China, Science of the Total Environment, 915, 170203. 【Q1 TOP】 [6] M. Chang, P. Li*, Y. Hu, Y. Sun, H. Wang, and Z. Li (2024), A new algorithm for mapping large inland water bodies using CYGNSS, International Journal of Remote Sensing, 45(5), 1522-1538. 【Q2】 [7] P. Li, G. Wang*, C. Liang, H. Wang, and Z. Li (2023), InSAR-derived Coastal Subsidence Reveals New Inundation Scenarios over the Yellow River Delta, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 16: 8431-8441. 【Q2 TOP】 [8] G. Wang, P. Li*, Z. Li, C. Liang, and H. Wang (2022), Coastal subsidence detection and characterization caused by brine mining over the Yellow River Delta using time series InSAR and PCA, International Journal of Applied Earth Observation and Geoinformation, 114: 103077. 【Q1 TOP】 [9] M. Chang, P. Li*, Y. Sun, H. Wang, and Z. Li (2022), Mapping Dynamic Turbidity Maximum Zone of the Yellow River Estuary from 38 Years of Landsat Imagery, Remote Sensing, 14(15): 3782. 【Q2 TOP】 [10] J. Liu, P. Li*, C. Tu, H. Wang, F. Shen, Z. Feng, and Z. Li (2022), Spatiotemporal Change Detection of Coastal Wetlands using Multi-band SAR Coherence and Synergetic Classification, Remote Sensing, 14(11): 2610. 【Q2 TOP】 [11] M. Chang, P. Li*, Z. Li, and H. Wang (2022), Mapping Tidal Flats of the Bohai and Yellow Seas Using Time Series Sentinel-2 Images and Google Earth Engine, Remote Sensing, 14(8): 1789. 【Q2 TOP】 [12] P. Li, Z. Li*, K. Dai, Y. Al-Husseinnawi, W. Feng, and H. Wang* (2021), Reconstruction and Evaluation of DEMs from Bistatic TanDEM-X SAR in Mountainous and Coastal Areas of China, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 14: 5152-5170. 【Q2 TOP】 [13] C. Tu, P. Li*, Z. Li, H. Wang, D. Li, S. Yin, Q. Zhu, M. Chang, J. Liu, and G. Wang (2021), Synergetic Classification of Coastal Wetlands over the Yellow River Delta with GF-3 Full-polarization SAR and Zhuhai-1 OHS Hyperspectral Remote Sensing, Remote Sensing, 13(21): 4444. 【Q2 TOP】 [14] Q. Zhu, P. Li*, Z. Li, S. Pu, X. Wu, N. Bi, and H. Wang (2021), Spatiotemporal Changes of Coastline over the Yellow River Delta in the Previous 40 Years with Optical and SAR Remote Sensing, Remote Sensing, 13(10): 1940. 【Q2 TOP】 [15] G. Wang, P. Li*, Z. Li, D. Ding, L. Qiao, J. Xu, G. Li, and H. Wang (2020), Coastal Dam Inundation Assessment for the Yellow River Delta: Measurements, Analysis and Scenario, Remote Sensing, 12(21): 3658. 【Q2 TOP】 [16] P. Li, M. Li, Z. Li*, and H. Wang (2020), Coastal Lowlands' Inundation Risk Assessment with High-resolution TanDEM-X DEM in Qingdao Coastal Plains, China, Proceedings of the International Association of Hydrological Sciences, 382: 621-627. [17] H. Du, X. Zhang, L. Xu*, W.P. Feng, L. Yi, and P. Li (2018), Source complexity of the 2016 MW7.8 Kaikoura (New Zealand) earthquake revealed from teleseismic and InSAR data, Earth and Planetary Physics, 2(4): 310-326. 【Q3】 [18] W. Feng*, S. Samsonov, R. Almeida*, A. Yassaghi, J. Li, Q. Qiu, P. Li, and W. Zheng (2018), Geodetic constraints of the 2017 Mw7.3 Sarpol Zahab, Iran earthquake and its implications on the structure and mechanics of the north-west Zagros thrust-fold belt, Geophysical Research Letters, 45(14): 6853-6861. 【Q1 TOP】 [19] W. Feng*, S. Samsonov, Y. Tian, Q. Qiu, P. Li, Y. Zhang, Z. Deng, and K. Omari (2017), Surface deformation associated with the 2015 MW 8.3 Illapel earthquake revealed by satellite-based geodetic observations and its implications for the seismic cycle, Earth and Planetary Science Letters, 460: 222-233. 【Q1 TOP】 [20] W. Feng*, E. Lindsey, S. Barbot, S. Samsonov, K. Dai, P. Li, Z.H. Li, J. Chen, and X. Xu (2017), Source Characteristics of the 2015 Mw 7.8 Gorkha Earthquake and its MW 7.2 Aftershock from Space Geodesy, Tectonophysics, 712: 747-758. 【Q2 TOP】 [21] P. Li, Z.H. Li*, J.P. Muller, C. Shi, and J.N. Liu (2016), A New Quality Validation of Global Digital Elevation Models Freely Available in China, Survey Review, 48(351): 409-420. 【Q3】 [22] P. Li, C. Shi*, Z.H. Li, J. P. Muller, J. Drummond, X. Y. Li, T. Li, Y. B. Li, and J. N. Liu (2013), Evaluation of ASTER GDEM using GPS benchmarks and SRTM in China, International Journal of Remote Sensing, 34(5): 1744-1771. 【Q2】 [23] P. Li*, C. Shi, Z.H. Li, J. P. Muller, J. Drummond, X. Li, T. Li, Y. Li, and J. Liu (2012), Evaluation of ASTER GDEM ver2 Using GPS Measurements and SRTM ver4.1 in China, ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, I-4: 181-186. [24] 李鹏,李振洪*,冯万鹏,刘睿,黄继锋,丁咚,王厚杰 (2019),海潮负荷对沿海地区宽幅InSAR形变监测的影响分析,地球物理学报,62(08): 2845-2857. 【SCI】 [25] 李鹏,李振洪,施闯*,冯万鹏,梁存任,李陶,曾琪明,刘经南 (2013),大地水准面高对InSAR大范围地壳形变监测的影响分析,地球物理学报,56(6): 1857-1867. 【SCI】 [26] 李鹏*(2021),海岸带地理环境雷达遥感监测关键问题研究,测绘学报,50(4): 565. 【EI】 [27] 李鹏,高梦瑶,李振洪*,王厚杰 (2020),阿尔金断裂带宽幅InSAR对流层延迟估计方法评估,武汉大学学报(信息科学版),45(6): 879-887. 【EI】 [28] 李鹏,普思寻,李振洪*,王厚杰 (2020),2000年以来胶州湾海岸线的光学与SAR多源遥感变化监测,武汉大学学报(信息科学版),45(9): 1485-1492. 【EI】 [29] 李鹏,黎达辉,李振洪*,王厚杰 (2019),黄河三角洲地区GF-3雷达数据与Sentinel-2多光谱数据湿地协同分类研究,武汉大学学报(信息科学版),44(11): 1641-1649. 【EI】 [30] 李鹏*(2018),宽幅InSAR观测阿尔金断裂带西段震间应变累积的研究,测绘学报,47(12): 1694. 【EI】 [31] 李振洪,李鹏*,丁咚,王厚杰 (2018),全球高分辨率数字高程模型研究进展与展望,武汉大学学报(信息科学版),43(12): 1927-1942. 【EI】 [32] 李鹏,李振洪,李陶,施闯,刘经南 (2017),宽幅InSAR大地测量学与大尺度形变监测方法,武汉大学学报(信息科学版),42(09): 1195-1202. 【EI】 [33] 李鹏,周虹利*,林是聪,王厚杰,李振洪 (2023),海洋塑料垃圾卫星遥感探测方法,测绘通报,(6): 20-26. [34] 李鹏,黎楚安,杨继梅,李振洪*,王厚杰 (2022),典型海岸带城市扩张的多源遥感监测与预测—以青岛市为例,测绘通报,(1): 105-109. [35] 李鹏,李振洪*,王厚杰 (2021),遥感地质学教学改革3W原则及支撑创新创业训练的探索,测绘与空间地理信息,44(12): 1-6. [36] 李鹏,李振洪*,王厚杰,韩宗珠,范德江,丁咚 (2020),地球大数据背景下遥感地质学课程体系构建与教学内容改革探索,测绘与空间地理信息,43(11): 4-7. [37] 李鹏,李振洪*,王厚杰,马妍妍,丁咚 (2020),解决全球问题为导向的地学专业“遥感原理与应用”课程教学改革研究,测绘与空间地理信息,43(1): 5-7. [38] 李鹏,张晶*,黄继锋,丁咚,曹立华 (2019),面向非测绘类工程专业“工程测量学”教学改革的研究,测绘与空间地理信息,42(1): 24-26. [39] 李鹏*,李振洪,施闯,刘经南 (2016),中国地区30米分辨率SRTM质量评估,测绘通报,(9): 24-28. [40] 李鹏,梁存任,李振洪,施闯*,刘经南 (2015),宽幅InSAR监测地震与火山形变研究进展,地球物理学进展,30(4): 1597-1607. [41] 李鹏*,尹晖 (2009),最小二乘配置在钢结构建筑物沉降监测中的应用研究,测绘与空间地理信息,32(3): 34-38. [42] 李淑,李鹏*,李振洪,王厚杰 (2024),协同全极化SAR与光学遥感的潮沟精细提取方法,测绘通报,(5): 1-8. [43] 张赟,李鹏*,李振洪,王厚杰 (2023),黄河三角洲Sentinel-3高精度时空连续海陆表面温度反演,测绘通报,(1): 120-126. [44] 陆霭莹,李鹏,朱海天,陈鹏*,赵益智 (2022),基于多源卫星遥感的渤海海上油气平台识别,海洋学研究,40(4): 82-89. [45] 李燕妮,李鹏,吴晓,毕乃双,王厚杰* (2022),黄河口湿地时空变化过程及其主控因素,海洋地质与第四纪地质,41(6): 1-10. [46] 彭颖,李鹏* (2019),融合光学与SAR遥感影像的同震地表三维形变监测适用性研究,测绘与空间地理信息,42(10): 86-89.