Push, Press, Slide: Mode-Aware Planar Contact Manipulation via Reduced-Order Models
Abstract
Non-prehensile planar manipulation, including pushing and press-and-slide, is critical for diverse robotic tasks, but notoriously challenging due to hybrid contact mechanics, under-actuation, and asymmetric friction limits that traditionally necessitate computationally expensive iterative control. In this paper, we propose a mode-aware framework for planar manipulation with one or two robotic arms based on contact topology selection and reduced-order kinematic modeling. Our core insight is that complex wrench-twist limit surface mechanics can be abstracted into a discrete library of physically intuitive models. We systematically map various single-arm and bimanual contact topologies to simple non-holonomic formulations, e.g. unicycle for simplified press-and-slide motion. By anchoring trajectory generation to these reduced-order models, our framework computes the required object wrench and distributes feasible, friction-bounded contact forces via a direct algebraic allocator. We incorporate manipulator kinematics to ensure long-horizon feasibility and demonstrate our fast, optimization-free approach in simulation across diverse single-arm and bimanual manipulation tasks. Supplementary videos and additional information are available at: https://sites.google.com/view/pushpressslide
Cite
@article{arxiv.2603.12399,
title = {Push, Press, Slide: Mode-Aware Planar Contact Manipulation via Reduced-Order Models},
author = {Melih Özcan and Umut Orguner and Ozgur S. Oguz},
journal= {arXiv preprint arXiv:2603.12399},
year = {2026}
}
Comments
8 pages, 13 figures. Submitted to IEEE IROS 2026