arXiv:2507.11085cs.CVeess.IV2025-07

首个3D大气结构基准,提升气候与气象预测精度

Atmos-Bench: 3D Atmospheric Structures for Climate Insight

  • 用WRF与增强版COSP模拟生成384步3D散射数据
  • 在532/355纳米波段上实现优于现有模型的重建效果
  • 无需辅助输入,融合物理约束,适合气候研究者使用

大气结构通过卫星激光雷达衰减后向散射(ATB)反演的后向散射系数(BC)呈现云、气溶胶和分子的三维分布,在人类活动、气候理解及极端天气预报中至关重要。现有方法多依赖辅助输入与简化物理假设,缺乏标准化3D评估基准,易引入不确定性并难以准确捕捉辐射传输与散射吸收效应。为此,本文提出Atmos-Bench:首个3D大气结构基准,配套FourCastX——一种频率增强的时空混合专家网络,通过耦合WRF与增强版COSP模拟器,在384个陆海时间步上生成532纳米与355纳米波段的921,600张图像切片,提供体素级高质量参考;将ATB-BC物理约束嵌入模型架构,提升恢复过程中的能量一致性;在Atmos-Bench数据集上,两个波段均实现一致性能提升,超越现有最优模型,且不依赖辅助输入。该工作为卫星遥感三维大气结构重建建立新标准,推动气候深度洞察。

原文摘要 · Abstract (English)

Atmospheric structure, represented by backscatter coefficients (BC) recovered from satellite LiDAR attenuated backscatter (ATB), provides a volumetric view of clouds, aerosols, and molecules, playing a critical role in human activities, climate understanding, and extreme weather forecasting. Existing methods often rely on auxiliary inputs and simplified physics-based approximations, and lack a standardized 3D benchmark for fair evaluation. However, such approaches may introduce additional uncertainties and insufficiently capture realistic radiative transfer and atmospheric scattering-absorption effects. To bridge these gaps, we present Atmos-Bench: the first 3D atmospheric benchmark, along with a novel FourCastX: Frequency-enhanced Spatio-Temporal Mixture-of-Experts Network that (a) generates 921,600 image slices from 3D scattering volumes simulated at 532 nm and 355 nm by coupling WRF with an enhanced COSP simulator over 384 land-ocean time steps, yielding high-quality voxel-wise references; (b) embeds ATB-BC physical constraints into the model architecture, promoting energy consistency during restoration; (c) achieves consistent improvements on the Atmos-Bench dataset across both 355 nm and 532 nm bands, outperforming state-of-the-art baseline models without relying on auxiliary inputs. Atmos-Bench establishes a new standard for satellite-based 3D atmospheric structure recovery and paves the way for deeper climate insight.

3D大气气候建模卫星遥感物理约束

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