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Agricultural land use mapping in the sudanian savanna of West Africa: Current status and future possibilities

机译:苏丹西非大草原的农业用地绘图:现状和未来的可能性

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Multi-temporal Landsat data covering the Bawku West district of Ghana were aligned to the agro-ecological calendar to map agricultural land use. Phenological curves based on NDVI and NIR were extracted. A decision tree classification based on the curves enabled the mapping of six broad classes. Results indicate the successful discrimination of irrigated land from other land use classes, but also the problem of separating natural vegetation from quasi-natural rainfed agriculture. This problem is attributed to the scale on which agriculture is practiced (small scale) and the inadequate spatial and temporal resolution of the Landsat instrument to capture the agricultural fields and cropping systems. In the following months multi-temporal (monthly) 6.5-meter RapidEye, complemented with 6-meter TerraSAR-X observations in the rainy season will be acquired for 2012 and 2013. The synergetic analysis of data from these satellite systems with contemporary field data on cropping cycles promises to improve agricultural land use mapping in this savanna region.
机译:覆盖加纳Bawku West District的多时间LANDSAT数据与农业生态日历对齐,以地图农业用地使用。提取基于NDVI和NIR的酚类曲线。基于曲线的决策树分类使能映射六个广泛类。结果表明,成功歧视来自其他土地使用课程的灌溉土地,也是将自然雨量农业分离自然植被的问题。这个问题归因于农业的规模(小规模)以及土地物仪器的不充分的空间和时间分辨率,以捕获农业领域和种植系统。在接下来的几个月内,将在2012年和2013年中获得多颞(每月)6.5米的Rapideye,与雨季中的6米Terrasar-X观测相吻合。在2012年和2013年中获得了与当代现场数据的这些卫星系统数据的协同分析裁剪周期承诺改善这种大草原地区的农业用地使用绘图。

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