李 黎 |
[1] 高颖, 许思怡, 李黎, 卢厚贤, 何琦敏,王晓明. 利用GPT3模型的GNSS-PWV计算方法 [J]. 测绘通报, 2023, 0(3): 44-48,103(CSCD核心)(本科生一作,排名3,通讯作者) [2] 李黎, 刘彦, 王迅,陈国栋. 不同时空条件下RTKLib与在线PPP解算系统的ZTD精度评估 [J]. 大地测量与地球动力学, 2023, 43(1): 12-17 (CSCD核心,排名1) [3] Li L., Wang X., Wei Y.,Wang H. The New PWV Conversion Models Based on GNSS and Meteorological Elements in the China Region [J]. Atmosphere, 2022, 13(11): 1810(SCI 3区,排名第1) [4] Li L., Gao Y., Xu S., Lu H., He Q.,Yu H. The New Improved ZHD and Weighted Mean Temperature Models Based on GNSS and Radiosonde Data Using GPT3 and Fourier Function [J]. Atmosphere, 2022, 13(10): 1648(SCI 3区排名1) [5] 许思怡, 高颖, 李黎, 卢厚贤,王晓明. 利用傅里叶函数构建全球气压气温改进模型 [J]. 测绘科学, 2022, 47(11): 170-176(CSCD核心)(本科生一作,排名3,通讯作者) [6] 李黎, 侯晓玲, 张雯雯, 高颖, 赵伟,陈国栋. 基于Emardson模型的GNSS-PWV转换系数精化研究 [J]. 地球物理学报, 2022, 65(11): 4225-4235(SCI, 3区,排名第1) [7] 韦云, 王迅, 王浩, 李黎, 陈国栋,赵伟. 中国东南沿海地区PWV 直接转换模型研究 [J]. 大地测量与地球动力学, 2022, 42(7): 750-754(CSCD核心)(本科生一作,排名4,通讯作者) [8] 李黎, 高颖, 陈国栋,赵伟. 长三角地区多种大气可降水量获取方法研究 [J]. 大地测量与地球动力学, 2022, 42(4): 384-388(CSCD核心,排名1) [9] Li L., Li Y., He Q.,Wang X. Weighted Mean Temperature Modelling Using Regional Radiosonde Observations for the Yangtze River Delta Region in China [J]. Remote Sensing, 2022, 14(8): 1909. (SCI,IF = 4.848 2区,排名1) [10] 刘彦, 李黎, 韦烨, 范頔, 周嘉陵, 李媛,张振. 基于CORS站的多因子分季节可降水量模型研究 [J]. 测绘科学, 2021, 46(7): 31-37. (CSCD核心)(本科生一作,排名2,通讯作者) [11] 管仲培, 高颖, 李黎, 周嘉陵, 刘宇, 侯晓玲,张雯雯. 融合GPT2w模型与GNSS参数获取大气可降水量 [J]. 大地测量与地球动力学, 2021, 41(7): 700-706. (CSCD核心)(本科生一作,排名3,通讯作者) [12] 范頔, 李黎, 刘彦, 韦烨, 韦云, 周嘉陵,刘宇. 长三角地区GNSS可降水量直接转换模型研究 [J]. 大地测量与地球动力学, 2021, 41(6): 628-632. (CSCD核心)(本科生一作,排名2,通讯作者) [13] 侯晓玲, 张雯雯, 李黎, 周嘉陵, 刘宇, 高颖,管仲培. 长三角地区GNSS大气水汽转换系数模型精化研究 [J]. 大地测量与地球动力学, 2021, 41(1): 17-20. (CSCD核心)(本科生一作,排名3,通讯作者) [14] 张振, 李黎, 田莹, 周嘉陵, 李媛,顾嘉伟. 连续运行参考站网的暴雨过程时空变化分析 [J]. 测绘科学, 2020, 45(8): 19-25. (CSCD核心)(学生一作,本人通讯) [15] 李黎, 宋越,周嘉陵. 利用小波变换对暴雨过程中GNSS气象要素的初步探索 [J]. 大地测量与地球动力学, 2020, 40(3): 225-230. (CSCD核心) [16] 李媛, 李黎, 张振, 顾嘉伟, 周嘉陵,谢威. 长三角地区分季节多因子本地化Tm模型研究 [J]. 大地测量与地球动力学, 2020, 40(2): 140-145. (CSCD核心)(学生一作,本人通讯作者) [17] 李黎, 宋越,周嘉陵. 利用小波变换对暴雨过程中GNSS气象要素的初步探索 [J]. 大地测量与地球动力学, 2020, 40(3): 225-230. (CSCD核心) [18] 李黎, 宋越, 易金花, 田莹,周嘉陵. 对流层延迟与可降水量直接转换模型研究 [J]. 大地测量与地球动力学, 2019, 39(5): 492-495. (CSCD核心) [19] 李黎, 连达军,陈国栋. 利用教师科研项目培养测绘专业本科生的创新能力 [J]. 测绘通报, 2018(12): 148-152.(中文核心,教研教改论文) [20] 江婷, 李黎, 田莹, 谢建,王卫军. 基于湖南CORS网的PWV时空变化分析及其在暴雨落区预报中的应用 [J]. 大地测量与地球动力学, 2018, 38(7): 707-713(CSCD核心)(学生一作,本人通讯作者) [21] Li, Li, Wu, Su-Qin, Wang, Xiao-Ming, Tian, Ying, He, Chang-Yong, and Zhang, Ke-Fei. Modelling of weighted-mean temperature using regional radiosonde observations in Hunan China [J]. Terrestrial, Atmospheric and Oceanic Sciences (TAO), 2018,29(2): 173-185, doi:10.3319/TAO.2017.05.26.01. (SCI IF=0.67)
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王晓明 |
[1] Li, Haobo, Wang, Xiaoming, Choy, Suelynn, Wu, Suqin, Jiang, Chenhui, Zhang, Jinglei, Qiu, Cong, Li, Li, Zhang, Kefei. A New Cumulative Anomaly-Based Model for the Detection of Heavy Precipitation Using GNSS-Derived Tropospheric Products. IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING[J]. 2022, 60: 3137014. [2] Li, Haobo, Wang, Xiaoming, Choy, Suelynn, Jiang, Chenhui, Wu, Suqin, Zhang, Jinglei, Qiu, Cong, Zhou, Kai, Li, Li, Fu, Erjiang, Zhang, Kefei. Detecting heavy rainfall using anomaly-based percentile thresholds of predictors derived from GNSS-PWV. ATMOSPHERIC RESEARCH[J]. 2022, 265:.105912. [3] Li, Li, Li, Yuan, He, Qimin, Wang, Xiaoming. Weighted Mean Temperature Modelling Using Regional Radiosonde Observations for the Yangtze River Delta Region in China. REMOTE SENSING[J]. 2022, 14(8): http://dx.doi.org/10.3390/rs14081909. [4] Haobo Li, Suelynn Choy, Xiaoming Wang, Kefei Zhang, Chenhui Jiang, Linqi Li, Xuan Liu, Andong Hu, Suqin Wu, Dejun Zhu. Estimation of diurnal-provided potential evapotranspiration using GNSS and meteorological products. Atmospheric Research. 2022, 280: http://dx.doi.org/10.1016/j.atmosres.2022.106424. [5] Haobo Li, Chenhui Jiang, Suelynn Choy, Xiaoming Wang, Kefei Zhang, Dejun Zhu. A Comprehensive Study on Factors Affecting the Calibration of Potential Evapotranspiration Derived from the Thornthwaite Model. Remote Sensing[J]. 2022, 14: https://doaj.org/article/c6b012431a35422e8411bdabc8663b48. [6] Tong, Laga, Zhang, Kefei, Li, Haobo, Wang, Xiaoming, Ding, Nan, Shi, Jiaqi, Zhu, Dantong, Wu, Suqin. An Investigation of Near Real-Time Water Vapor Tomography Modeling Using Multi-Source Data. Atmosphere[J]. 2022, 13(5): http://dx.doi.org/10.3390/atmos13050752. [7] Longjiang Li, Kefei Zhang, Suqin Wu, Haobo Li, Xiaoming Wang, Andong Hu, Wang Li, Erjiang Fu, Minghao Zhang, Zhen Shen. An Improved Method for Rainfall Forecast Based on GNSS-PWV. Remote Sensing[J]. 2022, 14: https://doaj.org/article/3f35ed3b15a04fe4b5772d03a25f92cc. [8] Li, Longjiang, Wu, Suqin, Zhang, Kefei, Wang, Xiaoming, Li, Wang, Shen, Zhen, Zhu, Dantong, He, Qimin, Wan, Moufeng. A new zenith hydrostatic delay model for real-time retrievals of GNSS-PWV. Atmospheric Measurement Techniques[J]. 2021, 14(10): 6379-6394, http://dx.doi.org/10.5194/amt-14-6379-2021. [9] Pengfei Cheng, Yingyan Cheng, Xiaoming Wang, Yantian Xu. Update China geodetic coordinate frame considering plate motion. 卫星导航(英文)[J]. 2021, 2(1): 1-12. [10] Li, Haobo, Wang, Xiaoming, Wu, Suqin, Zhang, Kefei, Chen, Xialan, Zhang, Jinglei, Qiu, Cong, Zhang, Shaotian, Li, Li. An Improved Model for Detecting Heavy Precipitation Using GNSS-Derived Zenith Total Delay Measurements. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing[J]. 2021, 14: 5392-5405. [11] Haobo Li, Xiaoming Wang, Suqin Wu, Kefei Zhang, Erjiang Fu, Ying Xu, Cong Qiu, Jinglei Zhang, Li Li. A New Method for Determining an Optimal Diurnal Threshold of GNSS Precipitable Water Vapor for Precipitation Forecasting. REMOTE SENSING[J]. 2021, 13(7). [12] Li, Haobo, Wang, Xiaoming, Zhang, Kefei, Wu, Suqin, Xu, Ying, Liu, Yang, Qiu, Cong, Zhang, Jinglei, Fu, Erjiang, Li, Li. A neural network-based approach for the detection of heavy precipitation using GNSS observations and surface meteorological data. Journal of Atmospheric and Solar-Terrestrial Physics[J]. 2021, 225: http://dx.doi.org/10.1016/j.jastp.2021.105763. [13] Zhang, Wenyuan, Zhang, Shubi, Chang, Guobin, Ding, Nan, Wang, Xiaoming. A new hybrid observation GNSS tomography method combining the real and virtual inverted signals. JOURNAL OF GEODESY[J]. 2021, 95(12): [14] Haobo Li, Xiaoming Wang, Suqin Wu, Kefei Zhang, Xialan Chen, Cong Qiu, Shaotian Zhang, Jinglei Zhang, Mingqiang Xie, Li Li. Development of an Improved Model for Prediction of Short-Term Heavy Precipitation Based on GNSS-Derived PWV. Remote Sensing[J]. 2020, 12(24). [15] Zhang, Shaotian, Wang, Xiaoming, Li, Zishen, Qiu, Cong, Zhang, Jinglei, Li, Haobo, Li, Li. A New Four-Layer Inverse Scale Height Grid Model of China for Zenith Tropospheric Delay Correction. IEEE Access[J]. 2020, 8: 210171-210182. [16] Qiu Cong, Wang Xiaoming*, Li Zishen, Zhang Shaotian, Li Haobo, Zhang Jinglei, Yuan Hong, The Performance of Different Mapping Functions and Gradient Models in the Determination of Slant Tropospheric Delay, Remote Sensing, 2020, 12(1), 1-21, https://doi.org/10.3390/rs12010130 [17] Zhang, J.; Wang Xiaoming*; Li, Z.; Li, S.; Qiu, C.; Li, H.; Zhang, S.; Li, L. The Impact of Different Ocean Tide Loading Models on GNSS Estimated Zenith Tropospheric Delay Using Precise Point Positioning Technique. Remote Sens. 2020, 12, 3080. [18] Xiaoming Wang*, Kefei Zhang, Suqin Wu, Zishen Li, Yingyan Cheng, Li Li, Hong Yuan, The correlation between GNSS-derived precipitable water vapor and sea surface temperature and its responses to El Niño–Southern Oscillation. Remote Sensing of Environment, 2018, 216, 1-12, https://doi.org/ 10.1016/j.rse.2018.06.029
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