arXiv:2503.11588eess.IV2025-03被引 1

神经映射可跨区域、跨参数无调优生成无空缺海洋光学数据

Generalization performance of neural mapping schemes for the space-time interpolation of satellite-derived ocean colour datasets

  • 用多传感器数据构建跨区域实验框架,测试神经映射泛化能力
  • 在地中海与北海间实现无需微调的优秀跨区域泛化性能
  • 适合大规模卫星海洋数据处理,推动神经方法实用化

神经映射方法已成为生成海表示踪物无空缺卫星产品的有力手段。由于关注的生物光学变量多样,且涉及过程和尺度复杂,该类学习方法的泛化性能成为关键挑战。若为特定区域或参数训练专用模型,将带来巨大训练成本。本研究针对神经映射方案的泛化性能,采用真实多源海洋光学数据集,在地中海与北海两个区域,对叶绿素a浓度、悬浮颗粒物浓度、颗粒后向散射系数等代表性生物光学参数进行系统评估。实验涵盖多种神经映射方案,结果表明:通过适当的特定数据集归一化处理,可在不进行任何微调的情况下,实现跨区域与跨参数的优异泛化表现。这些发现为神经方法在更大范围卫星海洋光学数据处理中的部署提供了新思路,超越了以往局限于案例研究的示范阶段。

原文摘要 · Abstract (English)

Neural mapping schemes have become appealing approaches to deliver gap-free satellite-derived products for sea surface tracers. The generalization performance of these learning-based approaches naturally arises as a key challenge. This is particularly true for satellite-derived ocean colour products given the variety of bio-optical variables of interest, as well as the diversity of processes and scales involved. Considering region-specific and parameter-specific neural mapping schemes will result in substantial training costs. This study addresses generalization performance of neural mapping schemes to deliver gap-free satellite-derived ocean colour products. We develop a comprehensive experimental framework using real multi-sensor ocean colour datasets for two regions (the Mediterranean Sea and the North Sea) and a representative set of bio-optical parameters (Chlorophyll-a concentration, suspended particulate matter concentration, particulate backscattering coefficient). We consider several neural mapping schemes, and we report excellent generalization performance across regions and bio-optical parameters without any fine-tuning using appropriate dataset-specific normalization procedures. We discuss further how these results provide new insights towards the large-scale deployment of neural schemes for the processing of satellite-derived ocean colour datasets beyond case-study-specific demonstrations.

神经映射海洋光学泛化性能遥感数据

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