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Lukas Von Stumberg

9 accepted papers

2024

An Analytical Solution to Gauss-Newton Loss for Direct Image Alignment

ICLR 2024oral

Direct image alignment is a widely used technique for relative 6DoF pose estimation between two images, but its accuracy strongly depends on pose initialization. Therefore, recent end-to-end frameworks increase the convergence basin of the learned feature descriptors with special training objectives…

Cited by 0SourcePDFScholar
2021

MonoRec: Semi-Supervised Dense Reconstruction in Dynamic Environments From a Single Moving Camera

CVPR 2021poster

In this paper, we propose MonoRec, a semi-supervised monocular dense reconstruction architecture that predicts depth maps from a single moving camera in dynamic environments. MonoRec is based on a multi-view stereo setting which encodes the information of multiple consecutive images in a cost volume…

Cited by 105PDFcodeScholar
2020

D3VO: Deep Depth, Deep Pose and Deep Uncertainty for Monocular Visual Odometry

CVPR 2020oral

We propose D3VO as a novel framework for monocular visual odometry that exploits deep networks on three levels -- deep depth, pose and uncertainty estimation. We first propose a novel self-supervised monocular depth estimation network trained on stereo videos without any external supervision. In par…

Cited by 519PDFScholar
2019

Rolling-Shutter Modelling for Direct Visual-Inertial Odometry

IROS 2019poster

We present a direct visual-inertial odometry (VIO) method which estimates the motion of the sensor setup and sparse 3D geometry of the environment based on measurements from a rolling-shutter camera and an inertial measurement unit (IMU). The visual part of the system performs a photometric bundle a…

Cited by 45SourceScholar
2018

Direct Sparse Visual-Inertial Odometry Using Dynamic Marginalization

ICRA 2018poster

We present VI-DSO, a novel approach for visual-inertial odometry, which jointly estimates camera poses and sparse scene geometry by minimizing photometric and IMU measurement errors in a combined energy functional. The visual part of the system performs a bundle-adjustment like optimization on a spa…

Cited by 322SourcecodeScholar
2018

Omnidirectional DSO: Direct Sparse Odometry With Fisheye Cameras

RA-L 2018

We propose a novel real-time direct monocular visual odometry for omnidirectional cameras. Our method extends direct sparse odometry by using the unified omnidirectional model as a projection function, which can be applied to fisheye cameras with a field-of-view (FoV) well above 180°. This formulati

Cited by 99SourceScholar
2017

Real-time trajectory replanning for MAVs using uniform B-splines and a 3D circular buffer

IROS 2017poster

In this paper, we present a real-time approach to local trajectory replanning for microaerial vehicles (MAVs). Current trajectory generation methods for multicopters achieve high success rates in cluttered environments, but assume that the environment is static and require prior knowledge of the map…

Cited by 249SourceScholar