Design, Integration, and Experiment of Transplanting Robot for Early Plug Tray Seedling in a Plant Factory

Wei Liu, Minya Xu, Huanyu Jiang
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Abstract

In the context of plant factories relying on artificial light sources, energy consumption stands out as a significant cost factor. Implementing early seedling removal and replacement operations has the potential to enhance the yield per unit area and the per-energy consumption. Nevertheless, conventional transplanting machines are limited to handling older seedlings with well-established roots. This study addresses these constraints by introducing a transplanting workstation based on the UR5 industrial robot tailored to early plug tray seedlings in plant factories. A diagonal oblique insertion end effector was employed, ensuring stable grasping even in loose substrate conditions. Robotic vision technology was utilized for the recognition of nongerminating holes and inferior seedlings. The integrated robotic system seamlessly managed the entire process of removing and replanting the plug tray seedlings. The experimental findings revealed that the diagonal oblique-insertion end effector achieved a cleaning rate exceeding 65% for substrates with a moisture content exceeding 70%. Moreover, the threshold-segmentation-based method for identifying empty holes and inferior seedlings demonstrated a recognition accuracy surpassing 97.68%. The success rate for removal and replanting in transplanting process reached an impressive 95%. This transplanting robot system serves as a reference for the transplantation of early seedlings with loose substrate in plant factories, holding significant implications for improving yield in plant factory settings.
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植物工厂早插盘育苗移栽机器人的设计、集成与试验
对于依赖人工光源的植物工厂来说,能源消耗是一个重要的成本因素。及早进行秧苗移除和更换操作有可能提高单位面积产量和单位能耗。然而,传统的移栽机仅限于处理根系发达的老苗。本研究针对这些限制,引入了基于 UR5 工业机器人的移栽工作站,专为植物工厂的早期插盘秧苗量身定制。它采用了斜插式末端效应器,即使在基质松散的情况下也能确保稳定抓取。机器人视觉技术可用于识别非发芽孔和劣质秧苗。集成的机器人系统可无缝管理拔除和补种插盘秧苗的整个过程。实验结果表明,对于含水量超过 70% 的基质,斜插式末端效应器的清洁率超过 65%。此外,基于阈值分割的空穴和劣质秧苗识别方法的识别准确率超过了 97.68%。移栽过程中的移除和补种成功率达到了令人印象深刻的 95%。该移栽机器人系统为植物工厂中基质疏松的早期秧苗的移栽提供了参考,对提高植物工厂的产量具有重要意义。
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4.70
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