arXiv:2604.11444cs.CV2026-04被引 2

首个基于地理先验的全球高保真雷达图像生成模型

HuiYanEarth-SAR: A Foundation Model for High-Fidelity and Low-Cost Global Remote Sensing Imagery Generation

  • 用地理先验控制宏观结构,隐式建模散射特征保证微观细节真实
  • 仅凭地理坐标即可生成全球范围高保真SAR图像
  • 适合遥感模拟、数字孪生与电磁场景建模研究者

合成孔径雷达(SAR)图像生成对深入研究散射机制、构建可信电磁场景模型以及缓解数据稀缺瓶颈至关重要。然而现有方法难以同时保证全局地理语义和微观散射机制的高保真,导致全局生成困难。为此,我们提出首个基于AlphaEarth并融合散射机制的奠基性SAR图像生成模型HuiYanEarth-SAR。通过注入地理先验以控制宏观结构,并利用隐式散射特性建模确保微观纹理真实性,实现了仅凭地理坐标生成全球范围高保真SAR图像的能力。本研究不仅构建了高效的SAR场景模拟器,更从方法论层面打通地理、散射机制与人工智能的连接,推动SAR研究从感知理解向仿真创造范式跃迁,为构建高置信度地球数字孪生提供关键技术支撑。

原文摘要 · Abstract (English)

Synthetic Aperture Radar (SAR) imagery generation is essential for deepening the study of scattering mechanisms, establishing trustworthy electromagnetic scene models, and fundamentally alleviating the data scarcity bottleneck that constrains development in this field. However, existing methods find it difficult to simultaneously ensure high fidelity in both global geospatial semantics and microscopic scattering mechanisms, resulting in severe challenges for global generation. To address this, we propose \textbf{HuiYanEarth-SAR}, the first foundational SAR imagery generation model based on AlphaEarth and integrated scattering mechanisms. By injecting geospatial priors to control macroscopic structures and utilizing implicit scattering characteristic modeling to ensure the authenticity of microscopic textures, we achieve the capability of generating high-fidelity SAR images for global locations solely based on geographic coordinates. This study not only constructs an efficient SAR scene simulator but also establishes a bridge connecting geography, scatter mechanism, and artificial intelligence from a methodological standpoint. It advances SAR research by expanding the paradigm from perception and understanding to simulation and creation, providing key technical support for constructing a high-confidence digital twin of the Earth.

SAR生成数字孪生地理先验扩散模型

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