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Research PaperResearchia:202606.02061

RoboSemanticBench: Diagnosing Semantic Grounding in Action Prediction for VLA Models

Bin Yu

Abstract

Vision-language-action (VLA) models are built on the premise that semantic understanding from pretrained language or vision-language backbones should guide robot action prediction. Yet robot fine-tuning is optimized as imitation over task-specific action distributions, and many evaluations can be solved through visual or instruction-action shortcuts. We introduce RoboSemanticBench (RSB), an embodied benchmark for diagnosing semantic grounding in action prediction: whether post-trained VLA models...

Submitted: June 2, 2026Subjects: Robotics; Robotics

Description / Details

Vision-language-action (VLA) models are built on the premise that semantic understanding from pretrained language or vision-language backbones should guide robot action prediction. Yet robot fine-tuning is optimized as imitation over task-specific action distributions, and many evaluations can be solved through visual or instruction-action shortcuts. We introduce RoboSemanticBench (RSB), an embodied benchmark for diagnosing semantic grounding in action prediction: whether post-trained VLA models can use complex instruction semantics to select and manipulate the correct physical target. In each episode, a robot receives a multiple-choice math or general-knowledge question, observes candidate answer blocks, and must grasp the block corresponding to the correct answer. RSB covers controlled arithmetic, grade-school mathematical understanding, and commonsense or factual understanding under four-choice and ten-choice suites. Across representative VLA models, we find that many policies learn to grasp candidate blocks but select the semantically correct block at near-random or below-random rates after controlling for grasp success, revealing a persistent gap between backbone-level semantic competence and action prediction.


Source: arXiv:2606.02277v1 - http://arxiv.org/abs/2606.02277v1 PDF: https://arxiv.org/pdf/2606.02277v1 Original Link: http://arxiv.org/abs/2606.02277v1

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Submission Info
Date:
Jun 2, 2026
Topic:
Robotics
Area:
Robotics
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