Estimating Velocity of Spheres from Rolling-Shutter Image(s)
Abstract
Rolling-shutter cameras introduce characteristic distortions when imaging fast moving objects, and these effects are typically treated as artifacts to be corrected. In this work, we instead leverage rolling-shutter distortions as a valuable source of temporal information to estimate the 3D translational and angular velocities of rapidly moving spherical objects from a single rolling-shutter frame. We design a robust and easily detectable spherical pattern and propose a correspondence-free formulation that recovers motion by enforcing geometric consistency in a back-projection framework. By exploiting the geometry of the sphere, translational and rotational motions are decoupled and estimated through a two-stage optimization process, enabling reliable velocity recovery even for textureless objects. Extensive experiments on both synthetic and real datasets demonstrate accurate and robust estimation of motion parameters under challenging high-speed conditions.
Keywords
Cite
@article{arxiv.2606.31760,
title = {Estimating Velocity of Spheres from Rolling-Shutter Image(s)},
author = {Wenjie Xue and Jun Yang and Jingmin Wang and Limin Shang},
journal= {arXiv preprint arXiv:2606.31760},
year = {2026}
}