collaborators

6 papers

cs.RO2025

SF-Loc: A Visual Mapping and Geo-Localization System based on Sparse Visual Structure Frames

Yuxuan Zhou, Xingxing Li, Shengyu Li +3

For high-level geo-spatial applications and intelligent robotics, accurate global pose information is of crucial importance. Map-aided localization is a universal approach to overc…

cs.RO2025

MASt3R-Fusion: Integrating Feed-Forward Visual Model with IMU, GNSS for High-Functionality SLAM

Yuxuan Zhou, Xingxing Li, Shengyu Li +3

Visual SLAM is a cornerstone technique in robotics, autonomous driving and extended reality (XR), yet classical systems often struggle with low-texture environments, scale ambiguit…

cs.CV2025

S3MOT: Monocular 3D Object Tracking with Selective State Space Model

Zhuohao Yan, Shaoquan Feng, Xingxing Li +3

Accurate and reliable multi-object tracking (MOT) in 3D space is essential for advancing robotics and computer vision applications. However, it remains a significant challenge in m…

cs.RO2024

iKalibr: Unified Targetless Spatiotemporal Calibration for Resilient Integrated Inertial Systems

Shuolong Chen, Xingxing Li, Shengyu Li +2

The integrated inertial system, typically integrating an IMU and an exteroceptive sensor such as radar, LiDAR, and camera, has been widely accepted and applied in modern robotic ap…

cs.RO2024

iKalibr-RGBD: Partially-Specialized Target-Free Visual-Inertial Spatiotemporal Calibration For RGBDs via Continuous-Time Velocity Estimation

Shuolong Chen, Xingxing Li, Shengyu Li +1

Visual-inertial systems have been widely studied and applied in the last two decades (from the early 2000s to the present), mainly due to their low cost and power consumption, smal…

cs.RO2024

RIs-Calib: An Open-Source Spatiotemporal Calibrator for Multiple 3D Radars and IMUs Based on Continuous-Time Estimation

Shuolong Chen, Xingxing Li, Shengyu Li +2

Aided inertial navigation system (INS), typically consisting of an inertial measurement unit (IMU) and an exteroceptive sensor, has been widely accepted as a feasible solution for…