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Research PaperResearchia:202608.04094

Probabilistic Reachable-Action Verification of Visuomotor Policies via Set-Based Training

Yanliang Huang

Abstract

Reachability analysis for visuomotor policies is difficult because large visual encoders make end-to-end set propagation computationally expensive and excessively conservative. We therefore freeze the visual encoder and confine set propagation to a low-dimensional interface between it and the downstream policy, with the interface set calibrated from held-out camera-pose perturbations. Propagating this set through the policy with zonotopes yields a terminal output-enclosure width that set-based t...

Submitted: August 4, 2026Subjects: Robotics; Robotics

Description / Details

Reachability analysis for visuomotor policies is difficult because large visual encoders make end-to-end set propagation computationally expensive and excessively conservative. We therefore freeze the visual encoder and confine set propagation to a low-dimensional interface between it and the downstream policy, with the interface set calibrated from held-out camera-pose perturbations. Propagating this set through the policy with zonotopes yields a terminal output-enclosure width that set-based training optimizes directly. During evaluation, camera-pose perturbations are sampled from the prescribed distribution, and rollout-level split conformal calibration converts the resulting action-deviation scores into a probabilistic reachable-action radius with finite-sample coverage. In controlled manipulation experiments, set-based training reduces this radius while preserving closed-loop task capability, and matched behavior-only, observational-consistency, and pointwise-adversarial controls all leave a larger radius.


Source: arXiv:2608.02545v1 - http://arxiv.org/abs/2608.02545v1 PDF: https://arxiv.org/pdf/2608.02545v1 Original Link: http://arxiv.org/abs/2608.02545v1

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Date:
Aug 4, 2026
Topic:
Robotics
Area:
Robotics
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