Arid
DOI10.3390/rs8110906
Creating Multi-Temporal Composites of Airborne Imaging Spectroscopy Data in Support of Digital Soil Mapping
Diek, Sanne; Schaepman, Michael E.; de Jong, Rogier
通讯作者Diek, Sanne
来源期刊REMOTE SENSING
ISSN2072-4292
出版年2016
卷号8期号:11
英文摘要

An increasing demand for full spatio-temporal coverage of soil information drives the growing use of soil spectroscopy. Soil spectroscopy application performed under laboratory conditions or in-field studies in semi-arid areas have shown promising results. However, when acquiring data in temperate zones, limitations by vegetation-free coverage, variation in soil moisture and management are driving coherent spatio-temporal data collection. This study explores the use of multi-temporal imaging spectroscopy data to increase the total mapping area of bare soils in a heterogeneous agricultural landscape. Spectrally and spatially high-resolution data from the Airborne Prism Experiment (APEX) were collected in September 2013, April 2014 and April 2015. Bare soils in all acquisitions were identified. To eliminate short-term differences in soil moisture and soil surface roughness, the empirical line method was used to calibrate the reflectance values of the singular images (2013 and 2015) towards the singular image with most bare soil pixels (2014). Difference indicators show that the calibration was successful (decrease in root mean square difference and angle difference, increase in R-2 and gain and offset close to one and zero). Finally, the multi-temporal composite image contained more than double the amount of bare soil pixels as compared to a singular acquisition. Summary statistics show that reflectance values of the multi-temporal composite approximate the single image data of 2014 (mean and standard deviation of 2014: 24.2 +/- 8.9 vs. 24.0 +/- 9.5 for the multi-temporal composite of 2013, 2014 and 2015). This indicates that global differences in soil moisture and land management have been corrected for. As a result, an improved spatial representation of soil parameters can be retrieved from the composite data. Spatial distribution of the correction factors and analysis of the spatial variability of all images, however, indicate that non-linear, short-term differences like variation in soil moisture and land management largely influence the result of the multi-temporal composite. Quantification and attribution of those factors will be required in the future to allow correcting for them.


英文关键词imaging spectroscopy multi-temporal composite digital soil mapping APEX empirical line method
类型Article
语种英语
国家Switzerland
收录类别SCI-E
WOS记录号WOS:000388798400027
WOS关键词ORGANIC-CARBON ; SURFACE-ROUGHNESS ; REFLECTANCE SPECTROSCOPY ; SPECTRAL REFLECTANCE ; LINEAR-COMBINATIONS ; CALIBRATION METHODS ; NIR SPECTROSCOPY ; WATER-CONTENT ; PREDICTION ; MOISTURE
WOS类目Remote Sensing
WOS研究方向Remote Sensing
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/195977
作者单位Univ Zurich, RSL, Winterthurerstr 190, CH-8057 Zurich, Switzerland
推荐引用方式
GB/T 7714
Diek, Sanne,Schaepman, Michael E.,de Jong, Rogier. Creating Multi-Temporal Composites of Airborne Imaging Spectroscopy Data in Support of Digital Soil Mapping[J],2016,8(11).
APA Diek, Sanne,Schaepman, Michael E.,&de Jong, Rogier.(2016).Creating Multi-Temporal Composites of Airborne Imaging Spectroscopy Data in Support of Digital Soil Mapping.REMOTE SENSING,8(11).
MLA Diek, Sanne,et al."Creating Multi-Temporal Composites of Airborne Imaging Spectroscopy Data in Support of Digital Soil Mapping".REMOTE SENSING 8.11(2016).
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