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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Mapping deciduous rubber plantations through integration of PALSAR and multi-temporal Landsat imagery
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Mapping deciduous rubber plantations through integration of PALSAR and multi-temporal Landsat imagery

机译:通过PALSAR和多时相Landsat影像的整合来绘制落叶橡胶林的地图

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Due to increasing global demand for natural rubber products, rubber (Hevea brasiliensis) plantation expansion has occurred in many regions where it was originally considered unsuitable. However, accurate maps of rubber plantations are not available, which substantially constrain our understanding of the environmental and socioeconomic impacts of rubber plantation expansion. In this study we developed a simple algorithm for accurate mapping of rubber plantations in northern tropical regions, by combining a forest map derived from microwave data and unique phenological characteristics of rubber trees observed from multi-temporal Landsat imagery. Phenology of rubber trees and natural evergreen forests in Hainan Island, China, was evaluated using eighteen Landsat TM/ETM+ images between 2007 and 2012. Temporal profiles of the Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Surface Water Index (LSWI), and near-infrared (NIR) reflectance for rubber trees and natural forest were constructed. The results showed that rubber plantations are distinguishable from natural evergreen forests in two phenological phases: 1) during the defoliation (leaf-off) phase in late February-March, vegetation index (NDVI, EVI, LSWI) values were lower in rubber plantations than in natural evergreen forests; and 2) during the foliation (new leaf emergence) phase in late March-April, rubber plantations had similar NDVI and LSWI values but higher EVI and NIR reflectance values than in natural forests. Therefore, it is possible to delineate rubber plantations within forested landscapes using one to two optical images acquired in the defoliation and/or foliation period. The mapping technique was developed and applied in the Danzhou Region of Hainan. Phased Array type L-band Synthetic Aperture Radar (PALSAR) 50-m Orthorectified Mosaic images were used to generate a forest cover map and further integrated with the phenological information of rubber plantations extracted from Landsat TM images during the foliation phase. The resultant map of rubber plantations has high accuracy (both producer's and user's accuracy is 96%). This simple and integrated algorithm has the potential to improve mapping of rubber plantations at the regional scale. This study also shows the value of time series Landsat images and emphasizes imagery selection at appropriate phenological phase for land cover classification, especially for delineating deciduous vegetation.
机译:由于全球对天然橡胶产品的需求不断增长,橡胶(巴西橡胶树)种植园的扩张已在许多最初被认为不合适的地区进行。但是,没有橡胶种植园的准确地图,这极大地限制了我们对橡胶种植园扩张对环境和社会经济影响的理解。在这项研究中,我们结合了微波数据得出的森林图和从多时相Landsat影像中观察到的橡胶树的独特物候特征,开发了一种简单的算法,可以准确绘制北部热带地区橡胶树的地图。使用2007年至2012年之间的18幅Landsat TM / ETM +图像对中国海南岛橡胶树和天然常绿森林的物候进行了评估。归一化植被指数(NDVI),增强植被指数(EVI),地表水的时空分布构造了橡胶树和天然林的指数(LSWI)和近红外(NIR)反射率。结果表明,橡胶人工林在两个物候期与自然常绿森林有明显区别:1)在2月下旬至3月的落叶(离开)阶段,橡胶人工林的植被指数(NDVI,EVI,LSWI)值低于在天然常绿森林中; 2)在3月至4月下旬的叶期(新叶出芽)阶段,橡胶林的NDVI和LSWI值相近,但EVI和NIR反射率值比天然林高。因此,可以使用在落叶和/或落叶期获取的一到两个光学图像来描绘森林景观中的橡胶种植园。该测绘技术在海南Dan州地区得到开发和应用。相控阵型L波段合成孔径雷达(PALSAR)50米正射镶嵌图像用于生成森林覆盖图,并在叶相阶段与从Landsat TM图像中提取的橡胶园的物候信息进行整合。生成的橡胶园地图具有很高的精度(生产商和用户的精度均为96%)。这种简单而集成的算法具有改善橡胶种植区在区域范围内的制图的潜力。这项研究还显示了时间序列Landsat影像的价值,并强调了在适当的物候阶段选择影像以进行土地覆盖分类,尤其是在描述落叶植被方面。

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