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A Low-Power High-Resolution Broad-Band Radar Using a Pulse Compression Technique for Meteorological Application., , , , , and . IEEE Geosci. Remote. Sens. Lett., 4 (3): 392-396 (2007)Development and Initial Observation of High-Resolution Volume-Scanning Radar for Meteorological Application., , , , , , , and . IEEE Trans. Geosci. Remote. Sens., 48 (8): 3225-3235 (2010)Precipitation Extremes Monitoring Using the Near-Real-Time GSMaP Product., , , , and . IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens., (2020)Real-Time Spectral Moments Estimation and Ground Clutter Suppression for Precipitation Radar with High Resolution., , , , and . IEICE Trans. Commun., 92-B (2): 578-584 (2009)Improvement of the GSMaP Precipitation Retrieval Algorithm for Microwave Sounders Over Coast., , , and . IGARSS, page 832-835. IEEE, (2021)Development and observation of the broad-band radar for meteorological application., , , and . IGARSS, page 2022-2025. IEEE, (2005)Gauge-Adjusted Global Satellite Mapping of Precipitation., , , , , and . IEEE Trans. Geosci. Remote. Sens., 57 (4): 1928-1935 (2019)An Estimator for Weather Radar Doppler Power Spectrum via Minimum Mean Square Error., , , , and . IEEE Trans. Geosci. Remote. Sens., (2022)Initial observation results for precipitation on the Ku-band broadband radar network., , , , , and . IGARSS, page 3991-3994. IEEE, (2011)Some Improvements in the GSMaP_Gauge Algorithm., , , and . IGARSS, page 7138-7140. IEEE, (2021)