Mapping shrub abundance in desert grasslands using geometric-optical modeling and multi-angle remote sensing with CHRIS/Proba
نویسندگان
چکیده
This work examines the application of a geometric-optical canopy reflectance model to provide measures of woody shrub abundance in desert grasslands at the landscape scale. The approach is through inversion of the non-linear simple geometric model (SGM) against 631 nm multi-angle reflectance data from the Compact High Resolution Imaging Spectrometer (CHRIS) flown on the European Space Agency's Project for On-Board Autonomy (Proba) satellite. Separation of background and upper canopy contributions was effected by a linear scaling of the parameters of the Walthall bidirectional reflectance distribution function model with the weights of a kernel-driven model. The relationship was calibrated against a small number of sample locations with highly contrasting background/upper canopy configurations, before application over an area of about 25 km. The results show that with some assumptions, the multi-angle remote sensing signal from CHRIS/Proba can be explained in terms of a combined soil–understory background response and woody shrub cover and exploited to map this important structural attribute of desert grasslands. © 2006 Elsevier Inc. All rights reserved.
منابع مشابه
Editorial Manager(tm) for Remote Sensing of Environment Manuscript Draft Manuscript Number: RSE-D-06-00067R1 Title: MAPPING SHRUB ABUNDANCE IN DESERT GRASSLANDS USING GEOMETRIC-OPTICAL MODELING AND MULTIANGLE REMOTE SENSING WITH CHRIS/Proba
This work examines the application of a geometric-optical canopy reflectance model to provide measures of woody shrub abundance in desert grasslands at the landscape scale. The approach is through inversion of the non-linear simple geometric model (SGM) against 631 nm multi-angle reflectance data from the Compact High Resolution Imaging Spectrometer (CHRIS) flown on the European Space Agency's ...
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