activity
20192021
most citedAscento: A Two-Wheeled Jumping Robot

254 citations · 342 across the 7 of their papers we have counts for

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11 papers · 1 filter

cs.RO2021

Unified Data Collection for Visual-Inertial Calibration via Deep Reinforcement Learning

Yunke Ao, Le Chen, Florian Tschopp +3

Visual-inertial sensors have a wide range of applications in robotics. However, good performance often requires different sophisticated motion routines to accurately calibrate came…

cs.RO2021

SemSegMap- 3D Segment-Based Semantic Localization

Andrei Cramariuc, Florian Tschopp, Nikhilesh Alatur +6

Localization is an essential task for mobile autonomous robotic systems that want to use pre-existing maps or create new ones in the context of SLAM. Today, many robotic platforms…

cs.RO2021

3D3L: Deep Learned 3D Keypoint Detection and Description for LiDARs

Dominic Streiff, Lukas Bernreiter, Florian Tschopp +2

With the advent of powerful, light-weight 3D LiDARs, they have become the hearth of many navigation and SLAM algorithms on various autonomous systems. Pointcloud registration metho…

cs.RO2021

CalQNet -- Detection of Calibration Quality for Life-Long Stereo Camera Setups

Jiapeng Zhong, Zheyu Ye, Andrei Cramariuc +4

Many mobile robotic platforms rely on an accurate knowledge of the extrinsic calibration parameters, especially systems performing visual stereo matching. Although a number of accu…

cs.RO202129 cited

Hough2Map -- Iterative Event-based Hough Transform for High-Speed Railway Mapping

Florian Tschopp, Cornelius von Einem, Andrei Cramariuc +5

To cope with the growing demand for transportation on the railway system, accurate, robust, and high-frequency positioning is required to enable a safe and efficient utilization of…

cs.RO20202 cited

Learning Trajectories for Visual-Inertial System Calibration via Model-based Heuristic Deep Reinforcement Learning

Le Chen, Yunke Ao, Florian Tschopp +5

Visual-inertial systems rely on precise calibrations of both camera intrinsics and inter-sensor extrinsics, which typically require manually performing complex motions in front of…