English

Mixed Reality Environment and High-Dimensional Continuification Control for Swarm Robotics

Robotics 2024-07-16 v4 Systems and Control Systems and Control

Abstract

Many new methodologies for the control of large-scale multi-agent systems are based on macroscopic representations of the emerging system dynamics, in the form of continuum approximations of large ensembles. These techniques, that are developed in the limit case of an infinite number of agents, are usually validated only through numerical simulations. In this paper, we introduce a mixed reality set-up for testing swarm robotics techniques, focusing on the macroscopic collective motion of robotic swarms. This hybrid apparatus combines both real differential drive robots and virtual agents to create a heterogeneous swarm of tunable size. We also extend continuification-based control methods for swarms to higher dimensions, and assess experimentally their validity in the new platform. Our study demonstrates the effectiveness of the platform for conducting large-scale swarm robotics experiments, and it contributes new theoretical insights into control algorithms exploiting continuification approaches.

Keywords

Cite

@article{arxiv.2310.01573,
  title  = {Mixed Reality Environment and High-Dimensional Continuification Control for Swarm Robotics},
  author = {Gian Carlo Maffettone and Lorenzo Liguori and Eduardo Palermo and Mario di Bernardo and Maurizio Porfiri},
  journal= {arXiv preprint arXiv:2310.01573},
  year   = {2024}
}
R2 v1 2026-06-28T12:38:48.518Z