arXiv:2505.00774cs.RO2025-05

机器人自动采样土豆组织,高效精准且成本低于2000美元

Design, Integration, and Evaluation of a Dual-Arm Robotic System for High Throughput Tissue Sampling from Potato Tubers

  • 双机械臂协同:视觉定位+抓取+定点采样一体化
  • 采样误差仅1.84毫米,成功率81.5%,单次耗时10.4秒
  • 适合农业检测场景,可替代人工劳动,成本低易推广

为解决马铃薯块茎分子病原体检测中人工取样的高劳动强度问题,本研究设计并集成了一套基于机器视觉的双臂协同在线机器人系统。块茎通过传送带输送,当YOLOv11视觉系统在工作区检测到块茎时,一自由度(P-DoF)机械臂配合夹持末端执行器将其固定并定位。第二臂为3-P-DoF笛卡尔机械臂,配备活检穿刺头,由YOLOv10视觉系统识别块茎上的采样点(如芽眼或匍匐茎疤痕),实现精准取样。采样过程分为四个阶段:穿刺插入、旋转松动组织、穿刺回缩、组织芯沉积。系统平均表面位置误差为1.84毫米,深度偏差1.79毫米(目标7.00毫米)。核心提取与沉积成功率为81.5%,平均采样周期10.4秒。系统组件总成本低于1,900美元,证明其作为低成本自动化替代方案的潜力。未来将优化多点采样能力,并在商业场景中验证。

原文摘要 · Abstract (English)

Manual tissue extraction from potato tubers for molecular pathogen detection is highly laborious. This study presents a machine-vision-guided, dual-arm coordinated inline robotic system integrating tuber grasping and tissue sampling mechanisms. Tubers are transported on a conveyor that halts when a YOLOv11-based vision system detects a tuber within the workspace of a one-prismatic-degree-of-freedom (P-DoF) robotic arm. This arm, equipped with a gripping end-effector, secures and positions the tuber for sampling. The second arm, a 3-P-DoF Cartesian manipulator with a biopsy punch-based end-effector, then performs tissue extraction guided by a YOLOv10-based vision system that identifies the sampling sites on the tuber such as eyes or stolon scars. The sampling involves four stages: insertion of the punch into the tuber, punch rotation for tissue detachment, biopsy punch retraction, and deposition of the tissue core onto a collection site. The system achieved an average positional error of 1.84 mm along the tuber surface and a depth deviation of 1.79 mm from a 7.00 mm target. The success rate for core extraction and deposition was 81.5%, with an average sampling cycle of 10.4 seconds. The total cost of the system components was under $1,900, demonstrating the system's potential as a cost-effective alternative to labor-intensive manual tissue sampling. Future work will focus on optimizing for multi-site sampling from a single tuber and validation in commercial settings.

机器人采样农业自动化双臂协作精准农业

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