Detection and Resolution of Motion Conflict in Visual Inertial Odometry @ICRA-cg8kk
Detection and Resolution of Motion Conflict in Visual Inertial Odometry  @ICRA-cg8kk
Uploaded May 2018 | Updated September 2026, 2 weeks ago
ICRA 2018 Spotlight Video
Interactive Session Tue AM Pod R.3
Authors: Wisely Babu, Benzun Pious; Cyganski, David; Duckworth, James; Kim, Soohwan
Title: Detection and Resolution of Motion Conflict in Visual Inertial Odometry

Abstract:
In this paper, we present a novel method to detect and resolve motion conflicts in visual-inertial odometry. Recently, it has been common to integrate an IMU sensor with visual odometry in order to improve localization accuracy and robustness. However, when a disagreement between the two sensor modalities occurs, the localization accuracy reduces drastically and leads to irreversible errors. In such conditions, multiple motion estimates based on the set of observations used are possible. This creates a conflict (motion conflict) in determining which observations to use for accurate ego-motion estimation. Therefore, we present a method to detect motion conflicts based on per-frame positional estimate discrepancy and per-landmark reprojection errors. Additionally, we also present a method to resolve motion conflicts by eliminating inconsistent IMU and landmark measurements. Finally, we implement Motion Conflict aware Visual Inertial Odometry (MC-VIO) by combining both detection and resolution of motion conflicts. We perform quantitative and qualitative evaluation of MC-VIO on visually and inertially challenging datasets. Experimental results indicate that the MC-VIO algorithm reduces the increase in absolute trajectory error by 80% and the relative pose error by 60% for scenes with motion conflict, in comparison to the state-of-the-art reference VIO algorithm.
Detection and Resolution of Motion Conflict in Visual Inertial OdometryMarkerless Visual Servoing on Unknown Objects for Humanoid Robot PlatformsA General Framework for Flexible Multi-Cue Photometric Point Cloud RegistrationTask Space Motion Planning DecompositionDeep Trail-Following Robotic Guide Dog in Pedestrian Environments for People Who Are Blind and VisuaHigh Speed Whole Body Dynamic Motion Experiment with Real Time Master-Slave Humanoid Robot SystemRobust and Fast 3D Scan Alignment Using Mutual InformationModelling Resource Contention in Multi-Robot Task Allocation Problems with Uncertain TimingNetwork Topology Inference in Swarm RoboticsGaussian Process Adaptive Sampling using the Cross-Entropy Method for Environmental Sensing and MoniUncertainty-Aware Learning from Demonstration Using Mixture Density Networks with Sampling-Free Vari1-Actuator 3-DoF Manipulation Using a Virtual Turntable Based on Differential Friction Surface
ICRA 2018 |

Detection and Resolution of Motion Conflict in Visual Inertial Odometry

SHARE TO X SHARE TO REDDIT SHARE TO FACEBOOK WALLPAPER