arXiv:2512.18128cs.CV2025-12被引 1

用免费卫星数据生成2.5米分辨率林冠高图,精度逼近商业影像。

SERA-H: Super-Resolution of Sentinel Time Series for Fine-Scale Canopy Height Mapping

  • 融合超分模块与时间注意力机制,从10米哨兵数据重建2.5米细节。
  • 在法国数据集上MAE仅2.6米,R²达0.82,超越常规哨兵模型。
  • 适合需要高频、低成本森林监测的研究者与管理者使用。

高分辨率林冠高度制图对森林管理和生物多样性监测至关重要。尽管深度学习方法已用于卫星影像预测高度图,但常面临数据可得性与空间分辨率的权衡。为此,本文提出SERA-H,一种端到端模型,结合超分辨率模块(EDSR)与时间注意力编码(UTAE)。在高密度激光雷达衍生的林冠高模型(CHM)监督下,该模型利用免费获取的哨兵-1与哨兵-2(10米)时序数据,生成2.5米分辨率的高度图。在法国开源基准数据集上评估,SERA-H的平均绝对误差(MAE)为2.6米,决定系数(R²)为0.82,不仅优于标准哨兵-1/2基线,还接近基于商业超高分辨率影像(如SPOT-6/7)的方法精度,且仅依赖免费数据。结果表明,结合高分辨率机载激光雷达监督与哨兵时序数据中的时空信息,可重构出超过输入影像原始分辨率的空间细节。通过逼近昂贵商业影像的精度,SERA-H为利用高重访频率公开数据实现温带森林高精度制图提供了可能。

原文摘要 · Abstract (English)

High-resolution mapping of canopy height is essential for forest management and biodiversity monitoring. Although recent studies have led to the advent of deep learning methods using satellite imagery to predict height maps, these approaches often face a trade-off between data accessibility and spatial resolution. To overcome these limitations, we present SERA-H, an end-to-end model combining a super-resolution module (EDSR) and temporal attention encoding (UTAE). Trained under the supervision of high-density LiDAR-derived Canopy Height Models (CHM), our model generates 2.5 m resolution height maps from freely available Sentinel-1 and Sentinel-2 (10 m) time series data. Evaluated against an open-source benchmark dataset in France, SERA-H, with a MAE of 2.6 m and R2 of 0.82, not only outperforms standard Sentinel-1/2 baselines but also approaches the accuracy of methods based on commercial very high-resolution imagery (e.g., SPOT-6/7), while relying solely on freely available data. These results demonstrate that combining high-resolution ALS supervision with the spatio-temporal information embedded in Sentinel time series enables the reconstruction of spatial detail finer than the native resolution of the input imagery. By approaching the accuracy of costly commercial imagery, SERA-H opens the possibility of mapping temperate forests using publicly available data with high revisit frequency.

林冠高度遥感超分辨率哨兵数据

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