arXiv:2507.10499cs.CVcs.LG2025-07被引 4

用卫星影像和深度学习,首次实现莫桑比克全国小农户农田精细测绘。

National level satellite-based crop field inventories in smallholder landscapes

  • 融合1.5米分辨率遥感数据与迁移学习,实现全国尺度农田边界自动提取。
  • 生成2100万块农田地图,农田识别准确率达93%,平均重叠率0.81。
  • 揭示小地块分布特征,适合政策制定者与农业研究者参考。

小农户农业可持续性政策设计受限于对耕地空间分布与地块规模等基本属性的了解不足。本研究结合1.5米分辨率地球观测数据与深度迁移学习,在最小依赖实地样本的前提下,实现了复杂小农户系统下国家尺度的作物地块划分。我们首次发布了覆盖约80万平方公里的莫桑比克2023年全国级农田数据集,包含2100万块独立地块。地图将活跃耕地与非农用地分离的整体准确率达93%,漏检与误检误差均衡。地块级空间一致性中位数交并比(IoU)达0.81,显著提升复杂小农户区域大范围地块划分的精度。活跃耕地图捕捉到全球土地覆盖或耕地制图尚未识别的碎片化农村区域,这些区域多位于农业前沿地带,占莫桑比克总人口的7%-9%。莫桑比克地块普遍极小,一半地块小于0.16公顷,83%小于0.5公顷。在0.05°聚合分辨率下,平均地块面积为0.32公顷,但随可达性、人口密度及净森林覆盖变化梯度呈现显著差异。该差异反映了从半自给小农到中型商业化农场及大规模农业经营等多种主体共存的格局。结果表明,地块规模是关联农业社会经济与环境后果(如粮食生产、生计、毁林、生物多样性)及其权衡的关键指标。

原文摘要 · Abstract (English)

The design of science-based policies to improve the sustainability of smallholder agriculture is challenged by a limited understanding of fundamental system properties, such as the spatial distribution of active cropland and field size. We integrate very high spatial resolution (1.5 m) Earth observation data and deep transfer learning to derive crop field delineations in complex agricultural systems at the national scale, while maintaining minimum reference data requirements and enhancing transferability. We provide the first national-level dataset of 21 million individual fields for Mozambique (covering ~800,000 km2) for 2023. Our maps separate active cropland from non-agricultural land use with an overall accuracy of 93% and balanced omission and commission errors. Field-level spatial agreement reached median intersection over union (IoU) scores of 0.81, advancing the state-of-the-art in large-area field delineation in complex smallholder systems. The active cropland maps capture fragmented rural regions with low cropland shares not yet identified in global land cover or cropland maps. These regions are mostly located in agricultural frontier regions which host 7-9% of the Mozambican population. Field size in Mozambique is very low overall, with half of the fields being smaller than 0.16 ha, and 83% smaller than 0.5 ha. Mean field size at aggregate spatial resolution (0.05°) is 0.32 ha, but it varies strongly across gradients of accessibility, population density, and net forest cover change. This variation reflects a diverse set of actors, ranging from semi-subsistence smallholder farms to medium-scale commercial farming, and large-scale farming operations. Our results highlight that field size is a key indicator relating to socio-economic and environmental outcomes of agriculture (e.g., food production, livelihoods, deforestation, biodiversity), as well as their trade-offs.

农田测绘遥感小农户土地利用

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