A compact laboratory spectro-goniometer (CLabSpeG) to assess the BRDF of materials.: presentation, calibration and implementation on Fagus sylvatica L. leaves

被引:31
作者
Biliouris, Dimitrios
Verstraeten, Willem W.
Dutre, Phillip
van Aardt, Jan A. N.
Muys, Bart
Coppin, Pol
机构
[1] Katholieke Univ Leuven, Dept Biosyst, M3 BIORES, BE-3001 Louvain, Belgium
[2] Katholieke Univ Leuven, Dept Comp Sci, BE-3001 Louvain, Belgium
[3] CSIR, Nat Resources & Environm Ecosyst Earth Observat, ZA-0001 Pretoria, South Africa
[4] Katholieke Univ Leuven, Dept Land Management & Econ, BE-3001 Louvain, Belgium
关键词
bRDF-retrieval; BRF-measurement; multi-angular; hyperspectral; spectroradiometer; vegetation; heat-stress;
D O I
10.3390/s7091846
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The design and calibration of a new hyperspectral Compact Laboratory Spectro-Goniometer (CLabSpeG) is presented. CLabSpeG effectively measures the bidirectional reflectance Factor (BRF) of a sample, using a halogen light source and an Analytical Spectral Devices (ASD) spectroradiometer. The apparatus collects 4356 reflectance data readings covering the spectrum from 350 nm to 2500 nm by independent positioning of the sensor, sample holder, and light source. It has an azimuth and zenith resolution of 30 and 15 degrees, respectively. CLabSpeG is used to collect BRF data and extract Bidirectional Reflectance Distribution Function (BRDF) data of non-isotropic vegetation elements such as bark, soil, and leaves. Accurate calibration has ensured robust geometric accuracy of the apparatus, correction for the conicality of the light source, while sufficient radiometric stability and repeatability between measurements are obtained. The bidirectional reflectance data collection is automated and remotely controlled and takes approximately two and half hours for a BRF measurement cycle over a full hemisphere with 125 cm radius and 2.4 minutes for a single BRF acquisition. A specific protocol for vegetative leaf collection and measurement was established in order to investigate the possibility to extract BRDF values from Fagus sylvatica L. leaves under laboratory conditions. Drying leaf effects induce a reflectance change during the BRF measurements due to the laboratory illumination source. Therefore, the full hemisphere could not be covered with one leaf. Instead 12 BRF measurements per leaf were acquired covering all azimuth positions for a single light source zenith position. Data are collected in radiance format and reflectance is calculated by dividing the leaf cycle measurement with a radiance cycle of a Spectralon reference panel, multiplied by a Spectralon reflectance correction factor and a factor to correct for the conical effect of the light source. BRF results of measured leaves are presented.
引用
收藏
页码:1846 / 1870
页数:25
相关论文
共 40 条
[1]  
ASD, 1999, TECHN GUID, P136
[2]  
BARANOSKI GVG, 2004, LIGHT INTERACTION PL, P186
[3]   IAC ETH goniospectrometer: A tool for hyperspectral HDRF measurements [J].
Bourgeois, C. Saskia ;
Ohmura, Atsumu ;
Schroff, Karl ;
Frei, Hans-Jorg ;
Calanca, Pierluigi .
JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY, 2006, 23 (04) :573-584
[4]   Leaf BRDF measurements and model for specular and diffuse components differentiation [J].
Bousquet, L ;
Lachérade, S ;
Jacquemoud, S ;
Moya, I .
REMOTE SENSING OF ENVIRONMENT, 2005, 98 (2-3) :201-211
[5]   BIDIRECTIONAL SCATTERING OF LIGHT FROM TREE LEAVES [J].
BRAKKE, TW ;
SMITH, JA ;
HARNDEN, JM .
REMOTE SENSING OF ENVIRONMENT, 1989, 29 (02) :175-183
[6]   BIDIRECTIONAL SCATTERING CHARACTERISTICS OF HEALTHY GREEN SOYBEAN AND CORN LEAVES IN-VIVO [J].
BREECE, HT ;
HOLMES, RA .
APPLIED OPTICS, 1971, 10 (01) :119-&
[7]   A spectralon BRF data base for MISR calibration applications [J].
Bruegge, C ;
Chrien, N ;
Haner, D .
REMOTE SENSING OF ENVIRONMENT, 2001, 77 (03) :354-366
[8]   A new spectrogoniophotometer to measure leaf spectral and directional optical properties [J].
Combes, Didler ;
Bousquet, Laurent ;
Jacquemoud, Stphane ;
Sinoquet, Herv ;
Varlet-Grancher, Claude ;
Moya, Ismal .
REMOTE SENSING OF ENVIRONMENT, 2007, 109 (01) :107-117
[9]  
COOK RL, 1987, IMAGE UNDERSTANDING, P1
[10]   Toward a direct comparison of field and laboratory goniometer measurements [J].
Dangel, S ;
Verstraete, MM ;
Schopfer, J ;
Kneubühler, M ;
Schaepman, M ;
Itten, KI .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2005, 43 (11) :2666-2675