2022.06-至今:,助理教授(青秀A)
2019.07-2022.05:中国科学院地理科学与资源研究所 博士后
2014.09-2019.06:浙江大学 硕博连读
2010.09-2014.06:西北农林科技大学,本科
主持国家自然科学青年基金等课题2项,发表一作及通讯SCI论文8篇。
主持项目
国家自然科学基金青年基金项目,42001304,基于被动微波降尺度的中国千米级分辨率逐日卫星土壤水分产品估算方法研究,2021.01至2023.12,24万,在研,主持。
遥感科学国家重点实验室开放基金,OFSLRSS202117,基于主/被动微波及光学遥感协同降尺度技术的高时空分辨率全覆盖土壤水分估算方法,2021.08-2023.08,在研,主持
代表性论文
Peilin Song, Yongqiang Zhang*., Jianping Guo*., Jiancheng Shi, Tianjie Zhao., and Bing Tong: A 1 km daily surface soil moisture dataset of enhanced coverage under all-weather conditions over China in 2003–2019, Earth Syst. Sci. Data (IF: 11.4), 14, 2613–2637, https://doi.org/10.5194/essd-14-2613-2022, 2022.
Peilin Song; Yongqiang Zhang*. An improved non-linear inter-calibration method on different radiometers for enhancing coverage of daily LST estimates in low latitudes. Remote Sensing of Environment (IF: 13.8), 2021, 264: 112626.
Peilin Song; Lamin R Mansaray; Jingfeng Huang*; Wenjiang Huang. Mapping paddy rice agriculture over China using AMSR-E time series data, ISPRS Journal of Photogrammetry and Remote Sensing (IF: 11.8), 2018, 144: 469-482.
Peilin Song; Xiaomei Zheng, et al. Estimating reed loss caused by Locusta migratoria manilensis using UAV-based hyperspectral data, Science of the Total Environment (IF: 10.7), 2020, 719: 137519.
Peilin Song; Yongqiang Zhang*; Jing Tian. Improving surface soil moisture estimates in humid regions by an enhanced remote sensing technique. Geophysical Research Letters (IF: 5.5), 2021, 48(5).
Peilin Song; Jingfeng Huang*, et al. An Improved Soil Moisture Retrieval Algorithm Based on the Land Parameter Retrieval Model for Water-Land Mixed Pixels Using AMSR-E Data, IEEE Transactions on Geoscience and Remote Sensing (IF:8.1), 2019, 57(10): 7643-7657.
Peilin Song; Jingfeng Huang*; Lamin R.Mansaray. An improved surface soil moisture downscaling approach over cloudy areas based on geographically weighted regression, Agricultural and Forest Meteorology (IF: 6.5), 2019, 275: 146-158.
Thomas Dowling, Peilin Song*, et al. An Improved Cloud Gap-Filling Method for Longwave Infrared Land Surface Temperatures through Introducing Passive Microwave Techniques, Remote Sensing (IF:5.3), 2021, 13(17):3522.