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Motofumi Arii
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2020 – today
- 2024
- [j14]Motofumi Arii:
Inversion Technique for PolSAR Parameters Enabling Quantitative Comparison in Space and Time. IEEE Trans. Geosci. Remote. Sens. 62: 1-11 (2024) - [j13]Motofumi Arii:
Quantitative Long-Term Change Monitoring by Maximizing Polarimetric Sensitivity. IEEE Trans. Geosci. Remote. Sens. 62: 1-13 (2024) - [c22]Motofumi Arii:
Direct Inversion of Polsar Parameters Using a General Volume Scattering Model. IGARSS 2024: 2777-2780 - [c21]Hiroyoshi Yamada, Chino Kobayashi, Ryoichi Sato, Motofumi Arii:
Modified Five-Component Scattering Power Decomposition for POLSAR Data. IGARSS 2024: 10795-10798 - 2022
- [j12]Motofumi Arii, Hiroyoshi Yamada, Hitoshi Sakamoto, Shoichiro Kojima:
Sensitivity Study of X-Band Multiparametric SAR Data From Cabbage Fields. IEEE Trans. Geosci. Remote. Sens. 60: 1-11 (2022) - 2020
- [c20]Masato Gocho, Motofumi Arii:
Efficient GPU-based local histogram analyzer for change detection in satellite SAR images. IGARSS 2020: 304-307 - [c19]Motofumi Arii, Takeshi Nishimura, Jin Serizawa:
MONITORING OF FISHING BOATS BY ALOS-2/4 DATA. IGARSS 2020: 3795-3798
2010 – 2019
- 2019
- [j11]Motofumi Arii, Hiroyoshi Yamada, Shoichiro Kojima, Masato Ohki:
Sensitivity Analysis of Multifrequency MIMP SAR Data From Rice Paddies. IEEE Trans. Geosci. Remote. Sens. 57(6): 3543-3551 (2019) - [c18]Masanori Gocho, Hiroyoshi Yamada, Yoshio Yamaguchi, Ryoichi Sato, Shoichiro Kojima, Motofumi Arii:
Robust Height Reconstruction of Buildings Based on Esprit-Tomosar. IGARSS 2019: 1136-1139 - 2018
- [j10]Masanori Gocho, Hiroyoshi Yamada, Motofumi Arii, Shoichiro Kojima, Ryoichi Sato, Yoshio Yamaguchi:
3-D Imaging Using SAR Tomography with Pi-SAR2-X Dataset. IEICE Trans. Commun. 101-B(2): 409-417 (2018) - [j9]Motofumi Arii, Hiroyoshi Yamada, Masato Ohki:
Characterization of L-Band MIMP SAR Data From Rice Paddies at Late Vegetative Stage. IEEE Trans. Geosci. Remote. Sens. 56(7): 3852-3860 (2018) - [c17]Seung-Bum Kim, Motofumi Arii, Thomas J. Jackson:
Modeling L-Band Synthetic Aperture Radar Observations through Dielectric Changes in Soil Moisture and Vegetation Over Shrublands. IGARSS 2018: 247-249 - [c16]Yu Okada, Yuya Yokota, Akira Karasawa, Makoto Matsuki, Motofumi Arii, Shohei Nakamura:
Hardware Performance of PALSAR-3 Onboard ALOS-4. IGARSS 2018: 4175-4176 - [c15]Motofumi Arii, Hiroyoshi Yamada, Shoichiro Kojima, Masato Ohki, Yu Okada:
Comparison of MIMP SAR Data from Rice Paddy at X- and L-Bands. IGARSS 2018: 4185-4188 - 2017
- [j8]Seung-Bum Kim, Motofumi Arii, Thomas J. Jackson:
Modeling L-Band Synthetic Aperture Radar Data Through Dielectric Changes in Soil Moisture and Vegetation Over Shrublands. IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens. 10(11): 4753-4762 (2017) - [j7]Motofumi Arii, Hiroyoshi Yamada, Tatsuharu Kobayashi, Shoichiro Kojima, Toshihiko Umehara, Tomomi Komatsu, Takeshi Nishimura:
Theoretical Characterization of X-Band Multiincidence Angle and Multipolarimetric SAR Data From Rice Paddies at Late Vegetative Stage. IEEE Trans. Geosci. Remote. Sens. 55(5): 2706-2715 (2017) - [c14]Motofumi Arii, Hiroyoshi Yamada:
Rice paddy monitoring by L-band MIMP SAR approach. IGARSS 2017: 2442-2445 - [c13]Hiroyoshi Yamada, Masanori Gocho, Motofumi Arii, Shoichiro Kojima, Ryoichi Sato, Yoshio Yamaguchi:
Model-based polarimetric scattering decomposition for TomoSAR. IGARSS 2017: 5323-5325 - 2016
- [c12]Motofumi Arii, Takeshi Nishimura:
Sensitivity analysis of L-band SAR to inundated area. IGARSS 2016: 3867-3870 - [c11]Hiroyoshi Yamada, Motofumi Arii, Ryoichi Sato, Yoshio Yamaguchi, Shoichiro Kojima:
Experimental study on multi-baseline POLSAR scattering component decomposition. IGARSS 2016: 5646-5649 - [c10]Motofumi Arii, Takeshi Nishimura, Tomomi Komatsu, Hiroyoshi Yamada, Tatsuharu Kobayashi, Shoichiro Kojima, Toshihiko Umehara:
Theoretical characterization of multi incidence angle and fully Polarimetric SAR data from rice paddies. IGARSS 2016: 5670-5673 - 2015
- [c9]Motofumi Arii, Takeshi Nishimura:
Landslide monitoring using ALOS-1 and 2 data. IGARSS 2015: 4129-4132 - 2014
- [j6]Takuma Watanabe, Hiroyoshi Yamada, Motofumi Arii, Ryoichi Sato, Sang-Eun Park, Yoshio Yamaguchi:
Study on Moisture Effects on Polarimetric Radar Backscatter from Forested Terrain. IEICE Trans. Commun. 97-B(10): 2074-2082 (2014) - [j5]Motofumi Arii, Masakazu Koiwa, Yoshifumi Aoki:
Applicability of SAR to Marine Debris Surveillance After the Great East Japan Earthquake. IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens. 7(5): 1729-1744 (2014) - [j4]Motofumi Arii:
Efficient Motion Compensation of a Moving Object on SAR Imagery Based on Velocity Correlation Function. IEEE Trans. Geosci. Remote. Sens. 52(2): 936-946 (2014) - 2013
- [c8]Motofumi Arii:
Multi-incidence angle approach to understand fully polarimetric SAR data from coniferous forest. IGARSS 2013: 2329-2332 - 2012
- [c7]Motofumi Arii, Jakob J. van Zyl, Yunjin Kim:
Improvement of adaptive-model based decomposition with polarization orientation compensation. IGARSS 2012: 95-98 - [c6]Motofumi Arii, Takuma Watanabe, Hiroyoshi Yamada:
Sensitivity study of radar backscatter from boreal forest using discrete scatterer model. IGARSS 2012: 1425-1428 - [c5]Takuma Watanabe, Hiroyoshi Yamada, Motofumi Arii, Sang-Eun Park, Yoshio Yamaguchi:
Model experiment of permittivity retrieval method for forested area by using Brewster's angle. IGARSS 2012: 1477-1480 - 2011
- [j3]Motofumi Arii, Jakob J. van Zyl, Yunjin Kim:
Adaptive Model-Based Decomposition of Polarimetric SAR Covariance Matrices. IEEE Trans. Geosci. Remote. Sens. 49(3): 1104-1113 (2011) - [j2]Jakob J. van Zyl, Motofumi Arii, Yunjin Kim:
Model-Based Decomposition of Polarimetric SAR Covariance Matrices Constrained for Nonnegative Eigenvalues. IEEE Trans. Geosci. Remote. Sens. 49(9): 3452-3459 (2011) - [c4]Motofumi Arii:
Improvement of ship-sea clutter ratio of SAR imagery using standard deviation filter. IGARSS 2011: 632-635 - [c3]Motofumi Arii, Jakob J. van Zyl, Yunjin Kim:
Measuring orientation and randomness of vegetation using polarimetric SAR data. IGARSS 2011: 1195-1198 - 2010
- [j1]Motofumi Arii, Jakob J. van Zyl, Yunjin Kim:
A General Characterization for Polarimetric Scattering From Vegetation Canopies. IEEE Trans. Geosci. Remote. Sens. 48(9): 3349-3357 (2010) - [c2]Motofumi Arii, Jakob J. van Zyl, Yunjin Kim:
Retriveval of soll moisture under vegetation using Polarimetric Scattering Cubes. IGARSS 2010: 1323-1326
2000 – 2009
- 2008
- [c1]Jakob J. van Zyl, Yunjin Kim, Motofumi Arii:
Requirements for Model-based Polarimetric Decompositions. IGARSS (5) 2008: 417-420
Coauthor Index
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