arXiv:2506.14066cs.RO2025-06被引 1

用点云补全提升机器人采摘遮挡草莓的抓取成功率

A Point Cloud Completion Approach for the Grasping of Partially Occluded Objects and Its Applications in Robotic Strawberry Harvesting

  • 先去噪分割,再补全点云生成完整3D模型
  • 抓取成功率达79.17%,障碍碰撞率降至13.95%
  • 适合复杂环境下需精准抓取的农业机器人

在非结构化环境中,物体遮挡给机器人抓取算法设计带来挑战。以草莓采摘为例,本文提出一个端到端框架,实现有效目标检测、分割与抓取规划。首先对点云进行去噪和分割以准确定位果实;为弥补遮挡导致的扫描不完整,采用点云补全模型生成密集3D重建。目标选择聚焦成熟草莓,其余归类为障碍物,并将优化后的点云转化为占用图以支持避障运动规划。实验表明,本方法在形状重建上表现优异,相比现有最佳方法,最低Chamfer Distance达1.10 mm;抓取成功率提升至79.17%,实际采摘中成功尝试比率达89.58%;同时障碍物碰撞率从43.33%降低至13.95%,显著提升了抓取质量与安全性。该流程显著推动了自主草莓采摘系统的效率与可靠性。

原文摘要 · Abstract (English)

In robotic fruit picking applications, managing object occlusion in unstructured settings poses a substantial challenge for designing grasping algorithms. Using strawberry harvesting as a case study, we present an end-to-end framework for effective object detection, segmentation, and grasp planning to tackle this issue caused by partially occluded objects. Our strategy begins with point cloud denoising and segmentation to accurately locate fruits. To compensate for incomplete scans due to occlusion, we apply a point cloud completion model to create a dense 3D reconstruction of the strawberries. The target selection focuses on ripe strawberries while categorizing others as obstacles, followed by converting the refined point cloud into an occupancy map for collision-aware motion planning. Our experimental results demonstrate high shape reconstruction accuracy, with the lowest Chamfer Distance compared to state-of-the-art methods with 1.10 mm, and significantly improved grasp success rates of 79.17%, yielding an overall success-to-attempt ratio of 89.58\% in real-world strawberry harvesting. Additionally, our method reduces the obstacle hit rate from 43.33% to 13.95%, highlighting its effectiveness in improving both grasp quality and safety compared to prior approaches. This pipeline substantially improves autonomous strawberry harvesting, advancing more efficient and reliable robotic fruit picking systems.

点云补全机器人采摘3D重建避障规划

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