Capabilities of BIOMASS Tomography for Investigating Tropical Forests

TEBALDINI, STEFANO;ROCCA, FABIO;
2015-01-01

2015
geometry; geophysical techniques; ionospheric disturbances; synthetic aperture radar; tomography; vegetation; AGB value; BIOMASS geometry; BIOMASS tomography capability; European Space Agency campaign; French Guiana; ONERA; Office National d Etudes et de Recherches Aerospatiales; Paracou site; TropiSAR; above-ground biomass value; airborne data resolution degradation; azimuth resolution; backscatter correlation investigation; backscattered power; bias phenomena; data processing approach; data stack; forest biomass retrieval; forest height retrieval; high-resolution data set; in situ data; original airborne data; raw data linear filtering; realistic BIOMASS imaging capability emulation; scatterer 3-D distribution recovery; standard SAR processing; system bandwidth reduction; temporal decorrelation; tropical area; tropical forest investigation; vertical resolution loss; volume height; Azimuth; Backscatter; Bandwidth; Biomass; 30-m layer; 6-MHz bandwidth; BIOMASS mission; P-band; forest height; forest vertical structure; spaceborne geometry simulation; synthetic aperture radar (SAR) tomography; tomographic phase; tropical forest biomass
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/879962
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