Research Interests
· Global and regional sea level change from various datasets;
· Deriving global and regional mass change from GRACE/GRACE-FO gravity solutions.
Projects
· Deriving the temporal gravity field and mass distribution change from GRACE-FO and China Gravity Missions (42061134010), 2021.1-2023.12, RMB 2,900,000, National Natural Science Foundation of international cooperation project, Participate;
· Theory and methodology for exploring global gravity field variation using fused multi low Earth orbit satellite data (41731069), 2018.1-2022.12, RMB 3,090,000, National Key R&D Program of China, Participate;
· Theory study and model development for recovering combined gravity field with two Kinds of spatial/temporal resolutions using GRACE data (41974002), 2020.1-2023.12,RMB 640,000🏃🏻♀️➡️,Natural Science Foundation of China, Participate;
· Studying on the gravity inversion algorithm and recovering new version gravity field model from GRACE data (41474017), 2015.1-2018.12💆,RMB 950,000,Natural Science Foundation of China, Participate;
· Theory of weighted spatiotemporal filtering and accuracy assessment for geodetic data series (41274035), 2013.1-2016.12, RMB 900,000🧗🏿,Natural Science Foundation of China, Participate;
· Multi-scale deformation analysis based on LMD method (41374007)📻,2014.1-2017.12, RMB 880,000, Natural Science Foundation of China, Participate;
· The multi-scale spatio-temporal characteristics and mechanism of sea level change in China based on LMD method (42064001), 2021.1-2024.12, RMB 360,000, Natural Science Foundation of China, Participate;
Publications
· Wang F., Shen Y., Chen Q., 2021. Reduced Misclosure of Global Sea-Level Budget Using New Released Tongji-Grace2018 Solution. Scientific Reports. doi: 10.1038/s41598-021-96880-w.
· Wang F., Shen Y., Chen Q., Wang W., 2021. Bridging the Gap between GRACE and GRACE Follow-on Monthly Gravity Field Solutions using Improved Multichannel Singular Spectrum Analysis. Journal of Hydrology, 2021, 594(2021):125972. doi:10.1016/j.jhydrol.2021.125972.
· Shen Y., Wang F*., Chen Q., 2021. Weighted Multichannel Singular Spectrum Analysis for Post-processing GRACE Monthly Gravity Field Models by Considering the Formal Errors. Geophysical Journal International. doi: 10.1093/gji/ggab199.
· Qiu X., Wang F*., Zhou Y., Zhou S., 2021. Weighted empirical mode decomposition for processing GNSS position time series with the consideration of formal errors. Acta Geodynamica et Geomaterialia, 18(3):397-408. doi: 10.13168/AGG.2021.0028.
· Wang F., Shen Y., Chen T., Chen Q., Li, W., 2020. Improved multi-channel singular spectrum analysis for post-processing GRACE monthly gravity field models. Geophysical Journal International, 223:825-839.
· Wang F., Shen Y., Chen Q., Li W., 2019. A heuristic singular spectrum analysis method for suspended sediment concentration time series contaminated with multiplicative noise. Acta Geodaetica et Geophysic. doi:10.1007/s40328-019-00269-1.
· Wang F., Shen Y., Li W., Chen Q., 2018. Singular spectrum analysis for heterogeneous time series by taking its formal errors into account. Acta Geodynamica et Geomaterialia, 15(4), 395-403.
· Wang W., Shen Y., Wang F., 2021. GRACE-based Two Severe Prolonged Hydrological Drought Analysis over Australia Mainland. Remote Sensing. doi: 10.3390/rs13081432.
· Feng T., Shen Y., Wang F., 2021. Independent component extraction from the incomplete coordinate time series of regional GNSS networks. Sensors, 21(1569):1-16.
· Ji K., Shen Y., Wang F., 2020. Signal Extraction from GNSS Position Time Series Using Weighted Wavelet Analysis, Remote Sensing, 12, 992. doi: 10.3390/rs12060992.
· Wang F., Zhou Y., Zhou S., 2016. Study on Methods for Improving LMD End Effect. Applied Mechanics and Materials, 851:559-566.
· Wang F., 2021. Global ocean mass change from GRACE and GRACE Follow-on and its closure with Altimeter and Argo floats observations. Acta Geodaetica et Cartographica Sinica, 2022. doi:10.11947/j.AGCS.2022 xb20210431.
· Wang F., Zhou S., Zhou Q., Lu P., 2016. Application of development weighted treble in TPGM(1,1) model. Science of Surveying and Mapping, 41(04):10-14.
· Wang F., Zhou S., Zhou Q., Lu P., 2016. An amendatory grey prediction model based on the original data sequence. Science of Surveying and Mapping, 41(06):34-39.
· Wang F., Zhou S., Zhou Q., Chi Q., 2016. Forecasting model of dam deformation based on LMD-SVR method. Science of Surveying and Mapping, 41(10):132-135.
· Wang F., Zhou Y., Zhou S., Luo Y., 2016. Gross error detection and correction with deformation observation data based on local mean decomposition method. Journal of Liaoning Technical University (Natural Science), 35(11):1295-1299.
· Wang F., Zhou Y., Zhou S., Luo Y., 2016. Forecasting model of dam deformation based on ELMD-LSSVM method. Journal of Liaoning Technical University (Natural Science), 35(12):1475-1479.
· Wang F., Zhou Y., Luo Y., 2016. Signal de-noising by new wavelet threshold function integrated with self-adaption Local Mean Decomposition. Yangtze River, 47(13):97-101.
· Wang F., Zhou S., Zhou Q., Lu P., 2015. Comparison between three methods in initial residuals problem of selecting weight iteration method. Science of Surveying and Mapping, 40(08):18-21.