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Naoto Ebuchi

Publication record assembled from the DBLP archive of ranked conferences.

Papers indexed

27

Venues

1

Active years

2002–2023

Best venue rank

C

Where they publish

Papers

27 indexed papers, newest first.

YearVenueTitleAuthors
2023IGARSSLong-Term Observation of the Soya Warm Current Combining HF Ocean Radars with Coastal Tide Gauges and Satellite Altimetry.Naoto Ebuchi, Yasushi Fukamachi, Kay I. Ohshima, Toru Takatsuka, Humio Mitsudera, Jun Nishioka, Kazuya Ono, Masao Ishikawa, Takaharu Daibo, K. Shiwasawa, Masaaki Wakatsuchi
2023IGARSSThe Advanced Microwave Scanning Radiometer 3 (AMSR3) Onboard the Global Observing Satellite for Greenhouse Gases and Water Cycle (GOSAT-GW) Toward Long-Term Water Cycle Monitoring.Misako Kachi, Rigen Shimada, Keiichi Ohara, Takuji Kubota, Takeshi Miura, Kazuya Inaoka, Yasushi Kojima, Kazumasa Aonashi, Naoto Ebuchi
2020IGARSSComparison of Spatial Distribution of High Wind Speed Around Typhoons Derived from Amsr2 All-Weather SEA Surface Wind Speed Product with JMA Best-Track Data.Naoto Ebuchi
2019IGARSSLong-Term Observations of the Global Water Cycle, Air-Sea Interactions and Polar Environments by GCOM-W/AMSR2.Naoto Ebuchi, Misako Kachi, Hideyuki Fujii, Takashi Maeda, Nodoka Ono, Marehito Kasahara, Haruhisa Shimoda
2019IGARSSRecent Status of the Global Change Observation Mission (GCOM) and its Synergies with JPSS.Misako Kachi, Hiroshi Murakami, Masahiro Hori, Yoshiaki Honda, Naoto Ebuchi, Haruhisa Shimoda
2018IGARSSEvaluation of All-Weather SEA Surface Wind Speed Product from GCOM-W/AMSR2 Microwave Radiometer.Naoto Ebuchi
2017IGARSSEvaluation of improved marine surface wind products from AMSR2 on GCOM-W.Naoto Ebuchi
2016IGARSSMeso- and submeso-scale ocean front detection using SAR and optical data.Osamu Isoguchi, Naoto Ebuchi, Masanobu Shimada
2015IGARSSEvaluation of marine vector winds observed by rapidscat on the international space station using statistical distribution.Naoto Ebuchi
2014IGARSSEvaluation of wind speed globally observed by AMSR2 on GCOM-W1.Naoto Ebuchi
2014IGARSSEvaluation of sea surface salinity observed by Aquarius.Naoto Ebuchi, Hiroto Abe
2013IGARSSIntercomparison of four ocean vector wind products from Oceansat-2 Scatterometer.Naoto Ebuchi
2013IGARSSEvaluation of sea surface salinity observed by Aquarius and SMOS.Naoto Ebuchi, Hiroto Abe
2012IGARSSEvaluation of wind vectors observed by Oceansat-2 scatterometer using statistical distributions.Naoto Ebuchi
2012IGARSSEvaluation of sea surface salinity observed by Aquarius.Naoto Ebuchi, Hiroto Abe
2011IGARSSEvaluations of wind vectors observed by ASCAT using statistical distributions.Naoto Ebuchi
2010IGARSSPropagation of subinertial variations in the Soya Warm Current revealed by HF ocean radars.Naoto Ebuchi, Yasushi Fukamachi, Kay I. Ohshima
2010IGARSSAMSR and DFS synergy.Naoto Ebuchi, W. Timothy Liu
2008IGARSSCross-Validation of Wind Products from Seawinds and AMSR on ADEOS-II.Naoto Ebuchi
2008IGARSSSubinertial Variations in the Soya Warm Current Revealed by HF Ocean Radars, Coastal Tide Gauges, and Bottom-Mounted ADCP.Naoto Ebuchi, Yasushi Fukamachi, Kay I. Ohshima, Masaaki Wakatsuchi
2007IGARSSRetrieval of ice thickness distribution in the seasonal ice zone from L-band SAR.Takenobu Toyota, Kay I. Ohshima, Naoto Ebuchi, Kazuki Nakamura, Shotaro Uto
2006IGARSSObservation of the Soya Warm Current Combining HF Ocean Radar with Coastal Tide Gauges and Satellite Altimetry.Naoto Ebuchi, Yasushi Fukamachi, Kay I. Ohshima, Kunio Shirasawa, Masaaki Wakatsuchi
2005IGARSSIntercomparison of wind speeds observed by AMSR and seawinds on ADEOS-II.Naoto Ebuchi
2005IGARSSAssessment of rain flag for the seawinds wind data product using AMSR precipitation data.Naoto Ebuchi
2004IGARSSEvaluation of ocean surface vector winds observed by QuikSCAT/seawinds and ADEOS-II/seawind.Naoto Ebuchi, Hans C. Graber, Michael J. Caruso
2004IGARSSComparison of ocean surface vector winds observed by SeaWinds on ADEOS-II with ocean buoy data.Naoto Ebuchi, Hans C. Graber, Michael J. Caruso
2002IGARSSProbability distribution of surface wave slope derived using Sun glitter images from geostationary meteorological satellite and surface vector winds from scatterometers.Naoto Ebuchi, Shoichi Kizu