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    AuthorHouborg, Rasmus (1)McCabe, Matthew (1)DepartmentBiological and Environmental Sciences and Engineering (BESE) Division (1)Environmental Science and Engineering Program (1)Water Desalination and Reuse Research Center (WDRC) (1)Journal
    Remote Sensing for Agriculture, Ecosystems, and Hydrology XVII (1)
    PublisherSPIE-Intl Soc Optical Eng (1)Type
    Conference Paper (1)
    Year (Issue Date)2015 (1)Item Availability
    Open Access (1)

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    Application of a regularized model inversion system (REGFLEC) to multi-temporal RapidEye imagery for retrieving vegetation characteristics

    Houborg, Rasmus; McCabe, Matthew (Remote Sensing for Agriculture, Ecosystems, and Hydrology XVII, SPIE-Intl Soc Optical Eng, 2015-10-14) [Conference Paper]
    Accurate retrieval of canopy biophysical and leaf biochemical constituents from space observations is critical to diagnosing the functioning and condition of vegetation canopies across spatio-temporal scales. Retrieved vegetation characteristics may serve as important inputs to precision farming applications and as constraints in spatially and temporally distributed model simulations of water and carbon exchange processes. However significant challenges remain in the translation of composite remote sensing signals into useful biochemical, physiological or structural quantities and treatment of confounding factors in spectrum-trait relations. Bands in the red-edge spectrum have particular potential for improving the robustness of retrieved vegetation properties. The development of observationally based vegetation retrieval capacities, effectively constrained by the enhanced information content afforded by bands in the red-edge, is a needed investment towards optimizing the benefit of current and future satellite sensor systems. In this study, a REGularized canopy reFLECtance model (REGFLEC) for joint leaf chlorophyll (Chll) and leaf area index (LAI) retrieval is extended to sensor systems with a band in the red-edge region for the first time. Application to time-series of 5 m resolution multi-spectral RapidEye data is demonstrated over an irrigated agricultural region in central Saudi Arabia, showcasing the value of satellite-derived crop information at this fine scale for precision management. Validation against in-situ measurements in fields of alfalfa, Rhodes grass, carrot and maize indicate improved accuracy of retrieved vegetation properties when exploiting red-edge information in the model inversion process. © (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE).
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