English

Reactive Robot-Centric Safety for Autonomous Navigation in Constrained and Dynamic Environments

Robotics 2026-05-18 v1 Systems and Control Systems and Control

Abstract

In this work, we address the problem of ensuring real-time safety in autonomous robot navigation, in spatially constrained dynamic environments, by utilizing only onboard sensors. We present a real-time control architecture that integrates a 3D LIDAR perception-based composite control barrier function(CBF)-based safety filter directly into the autonomy pipeline. The proposed perception-driven framework enforces collision avoidance constraints dynamically from onboard point cloud data, thus allowing a large number of constraints to be handled at the control frequency, while remaining minimally invasive to nominal task execution. The safety region is defined as an ellipsoid in the body-frame, consistent with the geometry of the platform, which induces time-varying constraints in the world frame as the robot rotates; this effect is handled through a dedicated formulation of time-varying (CBF) for each LIDAR point. We validate the system through multiple field experiments in underground environments by utilizing a quadruped platform performing a visual inspection task, demonstrating reliable operation in the presence of dynamic obstacles, unsafe high-level references, abrupt localization anomalies, and while traversing through narrow corridors.

Keywords

Cite

@article{arxiv.2605.15782,
  title  = {Reactive Robot-Centric Safety for Autonomous Navigation in Constrained and Dynamic Environments},
  author = {Viswa Narayanan Sankaranarayanan and Vignesh K. Viswanathan and Akshit Saradagi and Sumeet Satpute and George Nikolakopoulos},
  journal= {arXiv preprint arXiv:2605.15782},
  year   = {2026}
}

Comments

9 pages, 12 figures, currently under review

R2 v1 2026-07-22T07:14:04.357Z