RoboGrasp: A Universal Grasping Policy for Robust Robotic Control

Fuente: arXiv
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Hauptverfasser: Huang, Yiqi, Davies, Travis, Yan, Jiahuan, Chen, Xiang, Tian, Yu, Hu, Luhui
Format: Preprint
Veröffentlicht: 2025
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author Huang, Yiqi
Davies, Travis
Yan, Jiahuan
Chen, Xiang
Tian, Yu
Hu, Luhui
author_facet Huang, Yiqi
Davies, Travis
Yan, Jiahuan
Chen, Xiang
Tian, Yu
Hu, Luhui
contents Imitation learning and world models have shown significant promise in advancing generalizable robotic learning, with robotic grasping remaining a critical challenge for achieving precise manipulation. Existing methods often rely heavily on robot arm state data and RGB images, leading to overfitting to specific object shapes or positions. To address these limitations, we propose RoboGrasp, a universal grasping policy framework that integrates pretrained grasp detection models with robotic learning. By leveraging robust visual guidance from object detection and segmentation tasks, RoboGrasp significantly enhances grasp precision, stability, and generalizability, achieving up to 34% higher success rates in few-shot learning and grasping box prompt tasks. Built on diffusion-based methods, RoboGrasp is adaptable to various robotic learning paradigms, enabling precise and reliable manipulation across diverse and complex scenarios. This framework represents a scalable and versatile solution for tackling real-world challenges in robotic grasping.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03072
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle RoboGrasp: A Universal Grasping Policy for Robust Robotic Control
Huang, Yiqi
Davies, Travis
Yan, Jiahuan
Chen, Xiang
Tian, Yu
Hu, Luhui
Robotics
Computer Vision and Pattern Recognition
Imitation learning and world models have shown significant promise in advancing generalizable robotic learning, with robotic grasping remaining a critical challenge for achieving precise manipulation. Existing methods often rely heavily on robot arm state data and RGB images, leading to overfitting to specific object shapes or positions. To address these limitations, we propose RoboGrasp, a universal grasping policy framework that integrates pretrained grasp detection models with robotic learning. By leveraging robust visual guidance from object detection and segmentation tasks, RoboGrasp significantly enhances grasp precision, stability, and generalizability, achieving up to 34% higher success rates in few-shot learning and grasping box prompt tasks. Built on diffusion-based methods, RoboGrasp is adaptable to various robotic learning paradigms, enabling precise and reliable manipulation across diverse and complex scenarios. This framework represents a scalable and versatile solution for tackling real-world challenges in robotic grasping.
title RoboGrasp: A Universal Grasping Policy for Robust Robotic Control
topic Robotics
Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2502.03072