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FOCI: Trajectory Optimization on Gaussian Splats

M. Gomez Andreu, M. Wilder-Smith, V. Klemm, V. Patil, J. Tordesillas Torres, M. Hutter

IEEE/RSJ International Conference on Intelligent Robots and Systems - IROS 2025, Hangzhou (China). 19-25 octubre 2025


Resumen:

3D Gaussian Splatting (3DGS) has recently gained popularity as a faster alternative to Neural Radiance Fields (NeRFs) in 3D reconstruction and view synthesis methods. Leveraging the spatial information encoded in 3DGS, this work proposes FOCI (Field Overlap Collision Integral), an algorithm that is able to optimize trajectories directly on the Gaussians themselves. FOCI leverages a novel and interpretable collision formulation for 3DGS using the notion of the overlap integral between Gaussians. Contrary to other approaches, which represent the robot with conservative bounding boxes that underestimate the traversability of the environment, we propose to represent the environment and the robot as Gaussian Splats. This not only has desirable computational properties, but also allows for orientation-aware planning, allowing the robot to pass through very tight and narrow spaces. We extensively test our algorithm in both synthetic and real Gaussian Splats, showcasing that collision-free trajectories for the ANYmal legged robot that can be computed in a few seconds, even with hundreds of thousands of Gaussians making up the environment. The project page and code are available at https://rffr.leggedrobotics.com/works/foci/


Resumen divulgativo:

Este artículo presenta FOCI, un método rápido de optimización de trayectorias usando 3D Gaussian Splatting (3DGS). Al modelar tanto el robot como el entorno como Gaussianas, FOCI permite una planificación precisa y consciente de la orientación en espacios reducidos. Calcula trayectorias libres de colisiones en segundos mediante una novedosa formulación de colisiones basada en la superposición de Gaussianas.


Palabras clave: Three-dimensional displays , Simultaneous localization and mapping , Trajectory planning , Robot kinematics , Robot sensing systems , Neural radiance field , Planning , Collision avoidance , Robots , Trajectory optimization


DOI: DOI icon https://doi.org/10.1109/IROS60139.2025.11245845

Publicado en: IROS 2025: Conference proceedings, pp: 1884-1891, ISBN: 979-8-3315-4394-5

Fecha de publicación: 27-nov-2025


Cita:
M. Gomez Andreu, M. Wilder-Smith, V. Klemm, V. Patil, J. Tordesillas Torres, M. Hutter, "FOCI: Trajectory Optimization on Gaussian Splats", presentado en IEEE/RSJ International Conference on Intelligent Robots and Systems - IROS 2025, Hangzhou, China, 19-25 octubre 2025. En: IROS 2025: Conference proceedings, pp. 1884-1891, doi: 10.1109/IROS60139.2025.11245845

    Líneas de investigación:
  • Aprendizaje por Refuerzo, Agentes Inteligentes y Robótica
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
    ODS:
  • Objetivo 9: Industria, innovación e infraestructuras

IIT-25-214C

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