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DOI10.3390/rs11030232
Mapping Cropping Practices on a National Scale Using Intra-Annual Landsat Time Series Binning
Rufin, Philippe1,2; Frantz, David1; Ernst, Stefan1; Rabe, Andreas1; Griffiths, Patrick3; Ozdogan, Mutlu4; Hostert, Patrick1,2
发表日期2019
ISSN2072-4292
卷号11期号:3
英文摘要

Spatially explicit information on cropland use intensity is vital for monitoring land and water resource demands in agricultural systems. Cropping practices underlie substantial spatial and temporal variability, which can be captured through the analysis of image time series. Temporal binning helps to overcome limitations concerning operability and repeatability for mapping large areas and can improve the thematic detail and consistency of maps in agricultural systems. We here assessed the use of annual, quarterly, and eight-day temporal features for mapping five cropping practices on annual croplands across Turkey. We used 2403 atmospherically corrected and topographically normalized Landsat Collection 1 L1TP images of 2015 to compute quarterly best-pixel composites, quarterly and annual spectral-temporal metrics, as well as gap-filled eight-day time series of Tasseled Cap components. We tested 22 feature sets for binary cropland mapping, and subsequent discrimination of five cropping practices: Spring and winter cropping, summer cropping, semi-aquatic cropping, double cropping, and greenhouse cultivation. We evaluated area-adjusted accuracies and compared cropland area estimates at the province-level with official statistics. We achieved overall accuracies above 90%, when using either all quarterly features or the eight-day Tasseled Cap time series, indicating that temporal binning of intra-annual image time-series into multiple temporal features improves representations of cropping practices. Class accuracies of winter and spring, summer, and double cropping were robust, while omission errors for semi-aquatic cropping and greenhouse cultivation were high. Our mapped cropland extent was in good agreement with province-level statistics (r(2) = 0.85, RMSE = 7.2%). Our results indicate that 71.3% (+/- 2.3%) of Turkey's annual croplands were cultivated during winter and spring, 15.8% (+/- 2.2%) during summer, while 8.5% (+/- 1.6%) were double-cropped, 4% (+/- 1.9%) were cultivated under semi-aquatic conditions, and 0.32% (+/- 0.2%) was greenhouse cultivation. Our study presents an open and readily available framework for detailed cropland mapping over large areas, which bears the potential to inform assessments of land use intensity, as well as land and water resource demands.


WOS研究方向Remote Sensing
来源期刊REMOTE SENSING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/92786
作者单位1.Humboldt Univ, Geomat Lab, Unter den Linden 6, D-10117 Berlin, Germany;
2.Humboldt Univ, Integrat Res Inst Transformat Human Environm Syst, Unter den Linden 6, D-10117 Berlin, Germany;
3.European Space Agcy, Earth Observat Sci Applicat & Climate Dept, Largo Galileo Galilei 1, I-00044 Rome, Italy;
4.Univ Wisconsin, Dept Forest & Wildlife Ecol, 1630 Linden Dr, Madison, WI 53726 USA
推荐引用方式
GB/T 7714
Rufin, Philippe,Frantz, David,Ernst, Stefan,et al. Mapping Cropping Practices on a National Scale Using Intra-Annual Landsat Time Series Binning[J],2019,11(3).
APA Rufin, Philippe.,Frantz, David.,Ernst, Stefan.,Rabe, Andreas.,Griffiths, Patrick.,...&Hostert, Patrick.(2019).Mapping Cropping Practices on a National Scale Using Intra-Annual Landsat Time Series Binning.REMOTE SENSING,11(3).
MLA Rufin, Philippe,et al."Mapping Cropping Practices on a National Scale Using Intra-Annual Landsat Time Series Binning".REMOTE SENSING 11.3(2019).
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