Home /Research /Robust Stereo Visual Odometry Using Improved RANSAC-Based Methods for Mobile Robot Localization
OTHER

Robust Stereo Visual Odometry Using Improved RANSAC-Based Methods for Mobile Robot Localization

Yanqing Liu, Yuzhang Gu, Jiamao Li, Xiaolin Zhang

Year
2017
Citations
18
Access
Open access

Abstract

In this paper, we present a novel approach for stereo visual odometry with robust motion estimation that is faster and more accurate than standard RANSAC (Random Sample Consensus). Our method makes improvements in RANSAC in three aspects: first, the hypotheses are preferentially generated by sampling the input feature points on the order of ages and similarities of the features; second, the evaluation of hypotheses is performed based on the SPRT (Sequential Probability Ratio Test) that makes bad hypotheses discarded very fast without verifying all the data points; third, we aggregate the three best hypotheses to get the final estimation instead of only selecting the best hypothesis. The first two aspects improve the speed of RANSAC by generating good hypotheses and discarding bad hypotheses in advance, respectively. The last aspect improves the accuracy of motion estimation. Our method was evaluated in the KITTI (Karlsruhe Institute of Technology and Toyota Technological Institute) and the New Tsukuba dataset. Experimental results show that the proposed method achieves better results for both speed and accuracy than RANSAC.

Keywords

RANSACArtificial intelligenceComputer scienceVisual odometryComputer visionOdometryFeature (linguistics)Motion (physics)RobotMobile robot

Related papers

Browse all OTHER papers