VID-Fusion: Robust Visual-Inertial-Dynamics Odometry for Accurate External Force Estimation @feigao9214
VID-Fusion: Robust Visual-Inertial-Dynamics Odometry for Accurate External Force Estimation  @feigao9214
Uploaded November 2020 | Updated September 2026, 3 hours ago
Video for the ICRA 2021 submission.

Preprint: arxiv.org/abs/2011.03993v1

Recently, quadrotors are gaining significant attention in aerial transportation and delivery. In these scenarios, an accurate estimation of the external force is as essential as the 6 degree-of-freedom (DoF) pose since it is of vital importance for planning and control of the vehicle. To this end, we propose a tightly-coupled Visual-Inertial-Dynamics (VID) system that simultaneously estimates the external force applied to the quadrotor along with the 6 DoF pose. Our method builds on the state-of-the-art optimization-based Visual-Inertial system [1], with a novel deduction of the dynamics and external force factor extended from VIMO [2]. Utilizing the proposed dynamics and external force factor, our estimator robustly and accurately estimates the external force even when it varies widely. Moreover, since we explicitly consider the influence of the external force, when compared with VIMO [2] and VINS-Mono [1], our method shows comparable and superior pose accuracy, even when the external force ranges from neglectable to significant. The robustness and effectiveness of the proposed method are validated by extensive real-world experiments and application scenario simulation. We will release an open-source package of this method along with datasets with ground-truth force measurements for the reference of the community.
VID-Fusion: Robust Visual-Inertial-Dynamics Odometry for Accurate External Force EstimationGenerating Large Convex Polytopes Directly on Point CloudsOptimal Trajectory Generation for Quadrotor Teach-and-RepeatAdaptive Tracking and Perching for Quadrotor in Dynamic Scenarios [S2]Integrating Fast Regional Optimization into Sampling-based Kinodynamic Planning for MultirotorsMicrosaccade-inspired event camera for roboticsRobo-centric ESDF: A Fast and Accurate Whole-body Collision Evaluation Tool for Any-Shape RobotsSimultaneous Time Synchronization and Mutual Localization for Multi-robot SystemPolynomial-based Online Planning for Autonomous Drone Racing in Dynamic EnvironmentsMapless-Planner: Robust and Fast Planning Framework for Aggressive Autonomous Flight wo Map FusionAutomatic Parameter Adaptation for Quadrotor Trajectory PlanningDistributed Swarm Trajectory Optimization for Formation Flight in Dense Environments.
Fei Gao |

VID-Fusion: Robust Visual-Inertial-Dynamics Odometry for Accurate External Force Estimation

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