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Julius Erbach

5 accepted papers

2026

Continuous Space-Time Video Super-Resolution with 3D Fourier Fields

ICLR 2026poster

We introduce a novel formulation for continuous space-time video super-resolution. Instead of decoupling the representation of a video sequence into separate spatial and temporal components and relying on brittle, explicit frame warping for motion compensation, we encode video as a continuous, spati…

Cited by 0SourcecodeScholar
2026

Understanding, Accelerating, and Improving MeanFlow Training

CVPR 2026

MeanFlow promises high-quality generative modeling in few steps, by jointly learning instantaneous and average velocity fields. Yet, the underlying training dynamics remain unclear. We analyze the interaction between the two velocities and find: (i) well-established instantaneous velocity is a prere

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2025

Solving Inverse Problems with FLAIR

NeurIPS 2025poster

Flow-based latent generative models such as Stable Diffusion 3 are able to generate images with remarkable quality, even enabling photorealistic text-to-image generation. Their impressive performance suggests that these models should also constitute powerful priors for inverse imaging problems, but…

Cited by 0SourcecodeScholar
2023

EvShutter: Transforming Events for Unconstrained Rolling Shutter Correction

CVPR 2023poster

Widely used Rolling Shutter (RS) CMOS sensors capture high resolution images at the expense of introducing distortions and artifacts in the presence of motion. In such situations, RS distortion correction algorithms are critical. Recent methods rely on a constant velocity assumption and require mult…

2021

Time Lens: Event-Based Video Frame Interpolation

CVPR 2021poster

State-of-the-art frame interpolation methods generate intermediate frames by inferring object motions in the image from consecutive key-frames. In the absence of additional information, first-order approximations, i.e. optical flow, must be used, but this choice restricts the types of motions that c…

Cited by 234PDFcodeScholar