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dc.contributor.authorHo Tong Minh, D
dc.contributor.authorLe Toan, T
dc.contributor.authorRocca, F
dc.contributor.authorTebaldini, S
dc.contributor.authorVillard, L
dc.contributor.authorRéjou-Méchain, Maxime
dc.contributor.authorPhillips, OL
dc.contributor.authorFeldpausch, T.R.
dc.contributor.authorDubois-Fernandez, P
dc.contributor.authorScipal, K
dc.contributor.authorChave, J
dc.date.accessioned2016-02-01T12:06:58Z
dc.date.issued2016-01-12
dc.description.abstractDeveloping and improving methods to monitor forest carbon in space and time is a timely challenge, especially for tropical forests. The next European Space Agency Earth Explorer Core Mission BIOMASS will collect synthetic aperture radar (SAR) data globally from employing a multiple baseline orbit during the initial phase of its lifetime. These data will be used for tomographic SAR (TomoSAR) processing, with a vertical resolution of about 20 m, a resolution sufficient to decompose the backscatter signal into two to three layers for most closed-canopy tropical forests. A recent study, conducted in the Paracou site, French Guiana, has already shown that TomoSAR significantly improves the retrieval of forest aboveground biomass (AGB) in a high biomass forest, with an error of only 10% at 1.5-ha resolution. However, the degree to which this TomoSAR approach can be transferred from one site to another has not been assessed. We test this approach at the Nouragues site in central French Guiana (ca 100 km away from Paracou), and develop a method to retrieve the top-of-canopy height from TomoSAR. We found a high correlation between the backscatter signal and AGB in the upper canopy layer (i.e. 20-40 m), while lower layers only showed poor correlations. The relationship between AGB and TomoSAR data was found to be highly similar for forests at Nouragues and Paracou. Cross validation using training plots from Nouragues and validation plots from Paracou, and vice versa, gave an error of 16-18% of AGB using 1-ha plots. Finally, using a high-resolution LiDAR canopy model as a reference, we showed that TomoSAR has the potential to retrieve the top-of-canopy height with an error to within 2.5 m. Our analyses show that the TomoSAR-AGB retrieval method is accurate even in hilly and high-biomass forest areas and suggest that our approach may be generalizable to other study sites, having a canopy taller than 30 m. These results have strong implications for the tomographic phase of the BIOMASS spaceborne mission.en_GB
dc.description.sponsorshipESA (TropiSAR and TropiScat project)en_GB
dc.description.sponsorshipCNES (TOSCA program)en_GB
dc.description.sponsorship‘Investissement d'Avenir’, Agence Nationale de la Rechercheen_GB
dc.description.sponsorshipNERCen_GB
dc.description.sponsorshipGordon and Betty Moore Foundationen_GB
dc.identifier.citationVol. 175, 15 March 2016, pp. 138 - 147en_GB
dc.identifier.doi10.1016/j.rse.2015.12.037
dc.identifier.grantnumberCEBA, ref. ANR-10-LABX-25-01en_GB
dc.identifier.grantnumberTULIP: ANR-10-LABX-0041en_GB
dc.identifier.grantnumberANAEE-Services: ANR-11-INBS-0001en_GB
dc.identifier.urihttp://hdl.handle.net/10871/19470
dc.language.isoenen_GB
dc.publisherElsevieren_GB
dc.rights.embargoreasonPublisher policyen_GB
dc.rightsCopyright © 2016 Elsevier Inc. All rights reserved. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/en_GB
dc.subjectAboveground biomassen_GB
dc.subjectBIOMASS missionen_GB
dc.subjectFrench Guianaen_GB
dc.subjectParacouen_GB
dc.subjectNouraguesen_GB
dc.subjectTropiSARen_GB
dc.subjectP-band SAR tomographyen_GB
dc.subjectTomography phaseen_GB
dc.subjectVertical forest structureen_GB
dc.titleSAR tomography for the retrieval of forest biomass and height: Cross-validation at two tropical forest sites in French Guianaen_GB
dc.typeArticleen_GB
dc.identifier.issn0034-4257
dc.identifier.journalRemote Sensing of Environmenten_GB


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