Published May 2, 2017 | Version v1

Robust Collision Avoidance for Multiple Micro Aerial Vehicles Using Nonlinear Model Predictive Control

  • 1. Autonomous Systems Lab, ETH Zurich
  • 2. Cognitive Robotics, Delft University of Technology

Description

This video shows two MAVs with active collision avoidance in a real experiment. It accompanies the paper referenced below.

Reference

Kamel, Mina, et al. "Robust Collision Avoidance for Multiple Micro Aerial Vehicles Using Nonlinear Model Predictive Control."

Abstract

When several Multirotor Micro Aerial Vehicles (MAVs) share the same airspace, reliable and robust collision avoidance is required. In this paper we address the problem of multi-MAV reactive collision avoidance. We employ a model-based controller to simultaneously track a reference trajectory and avoid collisions. Moreover, to achieve a higher degree of robustness, our method also accounts for the uncertainty of the state estimator and of the position and velocity of the other agents. The proposed approach is decentralized, does not require a collision-free reference trajectory and accounts for the full MAV dynamics. We validated our approach in simulation and experimentally with two MAV.

Files

Nonlinear Model Predictive Control for Multi-Micro Aerial Vehicle Robust Collision Avoidance.mp4

Additional details

Funding

European Commission
AEROWORKS - Collaborative Aerial Robotic Workers 644128

References

  • Kamel, Mina, et al. "Robust Collision Avoidance for Multiple Micro Aerial Vehicles Using Nonlinear Model Predictive Control."