用视觉机器人精准授粉苹果,效率接近自然授粉。
A vision-based robotic system for precision pollination of apples
- 通过视觉识别花簇位置,机械臂精准喷洒带电花粉。
- 富士苹果授粉成功率达7.2%,蜜脆苹果达34.8%。
- 果实品质与自然授粉相当,每簇6.5秒完成作业。
全球粮食生产依赖成功授粉,但自然传粉者因气候变化、栖息地丧失和农药使用而减少。本文提出一种集成式苹果精准授粉机器人系统,包含机器视觉系统用于识别目标花簇并估算其位置与朝向,以及机械臂运动规划与驱动系统,引导喷头将带电花粉悬浮液施用于目标花簇。系统在实验室测试后,于蜜脆和富士苹果园进行田间评估。在蜜脆品种中,使用2克/升花粉悬浮液时,机器人授粉使34.8%的喷洒花成功结果,87.5%的花簇至少结出一个果实;自然授粉则分别为43.1%和94.9%。在富士苹果中,机器人授粉成功率仅为7.2%,仅20.6%的花簇结果,低于自然授粉的33.1%和80.6%。果实品质分析显示,机器人授粉果实与自然授粉果实的色泽、重量、直径、硬度、可溶性固形物及淀粉含量无显著差异。系统单簇处理周期为6.5秒。结果表明该技术在苹果园具应用前景,但仍需进一步研发以提升性能并验证其在不同果园环境与品种中的适用性。
原文摘要 · Abstract (English)
Global food production depends upon successful pollination, a process that relies on natural and managed pollinators. However, natural pollinators are declining due to factors such as climate change, habitat loss, and pesticide use. This paper presents an integrated robotic system for precision pollination in apples. The system consisted of a machine vision system to identify target flower clusters and estimate their positions and orientations, and a manipulator motion planning and actuation system to guide the sprayer to apply charged pollen suspension to the target flower clusters. The system was tested in the lab, followed by field evaluation in Honeycrisp and Fuji orchards. In the Honeycrisp variety, the robotic pollination system achieved a fruit set of 34.8% of sprayed flowers with 87.5% of flower clusters having at least one fruit when a 2 gm/l pollen suspension was used. In comparison, the natural pollination technique achieved a fruit set of 43.1% with 94.9% of clusters with at least one fruit. In Fuji apples, the robotic system achieved lower pollination success, with 7.2% of sprayed flowers setting fruit and 20.6% of clusters having at least one fruit, compared to 33.1% and 80.6%, respectively, with natural pollination. Fruit quality analysis showed that robotically pollinated fruits were comparable to naturally pollinated fruits in terms of color, weight, diameter, firmness, soluble solids, and starch content. Additionally, the system cycle time was 6.5 seconds per cluster. The results showed a promise for robotic pollination in apple orchards. However, further research and development is needed to improve the system and assess its suitability across diverse orchard environments and apple cultivars.
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