arXiv:2602.22376cs.CVcs.AI2026-02中稿 · CVPR被引 1

基于物理约束的单目无人机4D重建,解决高空动态场景模糊问题

AeroDGS: Physically Consistent Dynamic Gaussian Splatting for Single-Sequence Aerial 4D Reconstruction

  • 用单视角图像重建静态与动态几何,提升空中场景基础结构
  • 引入地面支撑、垂直稳定和轨迹平滑等物理先验,消除单目歧义
  • 适合无人机视觉导航、城市动态建模等需要高鲁棒性的场景

近年来4D场景重建在多个领域取得进展,但在单视图航拍条件下,由于空间范围大、动态物体占空间小且运动差异大,现有方法仍面临严重深度模糊和运动估计不稳定的问题,使单目航拍重建本质上为病态问题。为此,我们提出AeroDGS,一种面向单目无人机视频的物理引导4D高斯点积框架。AeroDGS引入单目几何提升模块,从单一航拍序列中重建可靠静态与动态几何,为动态估计提供稳健基础。为进一步解决单目歧义,提出物理引导优化模块,融合可微的地面支撑、垂直稳定性与轨迹平滑先验,将模糊图像线索转化为物理一致的运动表示。该框架联合优化静态背景与动态实体,实现几何稳定与时序连贯演进。我们还构建了一个真实无人机数据集,覆盖不同高度与运动条件以评估动态航拍重建效果。合成与真实无人机场景实验表明,AeroDGS优于当前最先进方法,在动态空中环境中实现更高重建保真度。

原文摘要 · Abstract (English)

Recent advances in 4D scene reconstruction have significantly improved dynamic modeling across various domains. However, existing approaches remain limited under aerial conditions with single-view capture, wide spatial range, and dynamic objects of limited spatial footprint and large motion disparity. These challenges cause severe depth ambiguity and unstable motion estimation, making monocular aerial reconstruction inherently ill-posed. To this end, we present AeroDGS, a physics-guided 4D Gaussian splatting framework for monocular UAV videos. AeroDGS introduces a Monocular Geometry Lifting module that reconstructs reliable static and dynamic geometry from a single aerial sequence, providing a robust basis for dynamic estimation. To further resolve monocular ambiguity, we propose a Physics-Guided Optimization module that incorporates differentiable ground-support, upright-stability, and trajectory-smoothness priors, transforming ambiguous image cues into physically consistent motion. The framework jointly refines static backgrounds and dynamic entities with stable geometry and coherent temporal evolution. We additionally build a real-world UAV dataset that spans various altitudes and motion conditions to evaluate dynamic aerial reconstruction. Experiments on synthetic and real UAV scenes demonstrate that AeroDGS outperforms state-of-the-art methods, achieving superior reconstruction fidelity in dynamic aerial environments.

4D重建无人机高斯点积物理先验

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