IROS2022 Talk: Risk-Aware Motion Planning for Collision-Tolerant Aerial Robots s.t. Uncertainty @autonomousrobotslab
IROS2022 Talk: Risk-Aware Motion Planning for Collision-Tolerant Aerial Robots s.t. Uncertainty  @autonomousrobotslab
Uploaded September 2022 | Updated September 2026, 3 weeks ago
Talk for our paper on "Risk-Aware Motion Planning for Collision-Tolerant Aerial Robots Subject to Localization Uncertainty"

Abstract: This paper contributes a novel strategy towards risk-aware motion planning for collision-tolerant aerial robots subject to localization uncertainty. Attuned to the fact that micro aerial vehicles are often tasked to navigate within GPS-denied, possibly unknown, confined and obstacle-filled environments the proposed method exploits collision-tolerance at the robot design level to mitigate the risks of collisions especially as their likelihood increases with growing uncertainty. Accounting for the maximum kinetic energy with which an impact is considered safe, alongside the robot dynamics, the planner builds a set of admissible uncertainty-aware and collision-inclusive paths over a horizon involving multiple motion steps. The first step of the best path is executed by the robot, while the procedure is then repeated in a receding horizon manner. Evaluated in extensive simulation studies and experimental results with a collision-tolerant flying robot, the planner successfully considers the interplay between uncertainty and the likelihood of a collision, balances the risks of possible impacts and enables to navigate safely within highly cluttered environments.
IROS2022 Talk: Risk-Aware Motion Planning for Collision-Tolerant Aerial Robots s.t. UncertaintyUncertainty-aware Receding Horizon Exploration and Mapping using Aerial RobotsGraph-based Exploration of Narrow Subterranean SettingsForceful Aerial Manipulation based on an Aerial Robotic Chain: Hybrid Modeling and ControlICRA2022 Talk Autonomous Teamed Exploration of Subterranean Environments with Legged & Aerial RobotsDegerminator - Experimentation on Robotic Area Disinfection based on UV Germicidal LightSemantics-aware Exploration and Inspection Path PlanningThe Unified Autonomy Stack: Toward a Blueprint for Generalizable Robot AutonomyAerial Contact-based Inspection Path Planning and ControlHaptic Feedback-based Reactive Navigation for Aerial Robots with failed LocalizationICRA2021: Autonomous Distributed 3D Radiation Field Estimation for Nuclear Env. CharacterizationICRA2020 Pitch Video: Learning-based Path Planning for Exploration of Subterranean Environments
Kostas Alexis |

IROS2022 Talk: Risk-Aware Motion Planning for Collision-Tolerant Aerial Robots s.t. Uncertainty

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER