Arid
DOI10.5194/bg-12-4621-2015
Deriving seasonal dynamics in ecosystem properties of semi-arid savanna grasslands from in situ-based hyperspectral reflectance
Tagesson, T.1; Fensholt, R.1; Huber, S.2; Horion, S.1; Guiro, I.3; Ehammer, A.1; Ardo, J.4
通讯作者Tagesson, T.
来源期刊BIOGEOSCIENCES
ISSN1726-4170
EISSN1726-4189
出版年2015
卷号12期号:15页码:4621-4635
英文摘要

This paper investigates how hyperspectral reflectance (between 350 and 1800 nm) can be used to infer ecosystem properties for a semi-arid savanna grassland in West Africa using a unique in situ-based multi-angular data set of hemispherical conical reflectance factor (HCRF) measurements. Relationships between seasonal dynamics in hyperspectral HCRF and ecosystem properties (biomass, gross primary productivity (GPP), light use efficiency (LUE), and fraction of photosynthetically active radiation absorbed by vegetation (FAPAR)) were analysed. HCRF data (rho) were used to study the relationship between normalised difference spectral indices (NDSIs) and the measured ecosystem properties. Finally, the effects of variable sun sensor viewing geometry on different NDSI wavelength combinations were analysed. The wavelengths with the strongest correlation to seasonal dynamics in ecosystem properties were shortwave infrared (biomass), the peak absorption band for chlorophyll a and b (at 682 nm) (GPP), the oxygen A band at 761 nm used for estimating chlorophyll fluorescence (GPP and LUE), and blue wavelengths (rho(412)) (FAPAR). The NDSI with the strongest correlation to (i) biomass combined rededge HCRF (rho(705)) with green HCRF (rho(587)), (ii) GPP combined wavelengths at the peak of green reflection (rho(518), rho(556)), (iii) LUE combined red (rho(688)) with blue HCRF (rho(436)), and (iv) FAPAR combined blue (rho(399)) and near-infrared (rho(1295)) wavelengths. NDSIs combining near infrared and shortwave infrared were strongly affected by solar zenith an-gles and sensor viewing geometry, as were many combinations of visible wavelengths. This study provides analyses based upon novel multi-angular hyperspectral data for validation of Earth-observation-based properties of semi-arid ecosystems, as well as insights for designing spectral characteristics of future sensors for ecosystem monitoring.


类型Article
语种英语
国家Denmark ; Senegal ; Sweden
收录类别SCI-E
WOS记录号WOS:000360003700005
WOS关键词LEAF-AREA INDEX ; GROSS PRIMARY PRODUCTION ; VEGETATION WATER-CONTENT ; LIGHT-USE EFFICIENCY ; BIDIRECTIONAL REFLECTANCE ; CHLOROPHYLL FLUORESCENCE ; SPECTRAL REFLECTANCE ; GONIOMETER SYSTEM ; FLUX MEASUREMENTS ; CANOPY
WOS类目Ecology ; Geosciences, Multidisciplinary
WOS研究方向Environmental Sciences & Ecology ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/186209
作者单位1.Univ Copenhagen, Dept Geosci & Nat Resource Management, DK-1350 Copenhagen, Denmark;
2.DHI GRAS AS, DK-2970 Horsholm, Denmark;
3.Ecole Super Polytech, Univ Cheikh Anta Diop Dakar, Lab Enseignement & Rech Geomat, Dakar 25275, Senegal;
4.Lund Univ, Dept Phys Geog & Ecosyst Sci, Lund 22362, Sweden
推荐引用方式
GB/T 7714
Tagesson, T.,Fensholt, R.,Huber, S.,et al. Deriving seasonal dynamics in ecosystem properties of semi-arid savanna grasslands from in situ-based hyperspectral reflectance[J],2015,12(15):4621-4635.
APA Tagesson, T..,Fensholt, R..,Huber, S..,Horion, S..,Guiro, I..,...&Ardo, J..(2015).Deriving seasonal dynamics in ecosystem properties of semi-arid savanna grasslands from in situ-based hyperspectral reflectance.BIOGEOSCIENCES,12(15),4621-4635.
MLA Tagesson, T.,et al."Deriving seasonal dynamics in ecosystem properties of semi-arid savanna grasslands from in situ-based hyperspectral reflectance".BIOGEOSCIENCES 12.15(2015):4621-4635.
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