collaborators

10 papers

cs.CV2026

SurfFill: Completion of LiDAR Point Clouds via Gaussian Surfel Splatting

Svenja Strobel, Matthias Innmann, Bernhard Egger +2

LiDAR-captured point clouds are often considered the gold standard in active 3D reconstruction. While their accuracy is exceptional in flat regions, the capturing is susceptible to…

cs.GR2026

Multi-Spectral Gaussian Splatting with Neural Color Representation

Lukas Meyer, Josef Grün, Maximilian Weiherer +3

We present MS-Splatting -- a multi-spectral 3D Gaussian Splatting (3DGS) framework that is able to generate multi-view consistent novel views from images of multiple, independent c…

eess.IV2025

MAROON: A Dataset for the Joint Characterization of Near-Field High-Resolution Radio-Frequency and Optical Depth Imaging Techniques

Vanessa Wirth, Johanna Bräunig, Nikolai Hofmann +3

Utilizing the complementary strengths of wavelength-specific range or depth sensors is crucial for robust computer-assisted tasks such as autonomous driving. Despite this, there is…

eess.SP2025

MM-2FSK: Multimodal Frequency Shift Keying for Ultra-Efficient and Robust High-Resolution MIMO Radar Imaging

Vanessa Wirth, Johanna Bräunig, Martin Vossiek +2

Accurate reconstruction of static and rapidly moving targets demands three-dimensional imaging solutions with high temporal and spatial resolution. Radar sensors are a promising se…

cs.CV2025

Refinement of Monocular Depth Maps via Multi-View Differentiable Rendering

Laura Fink, Linus Franke, Bernhard Egger +2

Accurate depth estimation is at the core of many applications in computer graphics, vision, and robotics. Current state-of-the-art monocular depth estimators, trained on extensive…

cs.CV2025

Towards Integrating Multi-Spectral Imaging with Gaussian Splatting

Josef Grün, Lukas Meyer, Maximilian Weiherer +3

We present a study of how to integrate color (RGB) and multi-spectral imagery (red, green, red-edge, and near-infrared) into the 3D Gaussian Splatting (3DGS) framework, a state-of-…