设计和评估用于采摘非洲菊的机器人原型,在从未见过的位置进行操作

IF 7.7 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Computers and Electronics in Agriculture Pub Date : 2024-11-26 DOI:10.1016/j.compag.2024.109671
Menno Sytsma, Bart M. van Marrewijk, Toon Tielen, Arjan Vroegop, Jos Ruizendaal
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引用次数: 0

摘要

像许多园艺产品一样,非洲菊花的采收是一项劳动密集型工作,因此非常需要自动化解决方案。虽然以前尝试过非洲菊花的机器人采收,但还没有在商业温室条件下进行过测试。本研究根据对作物的详细测量得出的实际要求,提出了一个设计过程。我们介绍了一种用于采摘非洲菊花的专用末端执行器,该执行器利用被动元件和特定的植物特性来实现精确定位和有效切割。我们还介绍了一种综合测试装置,它将末端执行器与用于现场试验的强大、高速传感和处理管道相结合。在实际温室条件下对整套系统进行的性能评估表明,总体收获成功率为 78%,花朵碰撞最小,终端执行器的定位和切割动作可靠。
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Design and evaluation of a robotic prototype for gerbera harvesting, performing actions at never-seen locations
The harvesting of gerbera flowers, like many horticultural products, is a labor-intensive task for which automated solutions are highly desirable. While robotic harvesting of gerbera flowers has previously been attempted, it has not been tested under commercial greenhouse conditions. This study presents a design process based on realistic requirements derived from detailed measurements of the crop. We introduce a specialized end-effector for gerbera flower harvesting that leverages passive components alongside specific plant characteristics to enable precise positioning and effective cutting. An integrated testing setup is also presented, combining the end-effector with a robust, high-speed sensing and processing pipeline for field trials. Performance evaluations of the complete system under real greenhouse conditions indicate an overall harvest success rate of 78%, with minimal flower collisions and reliable positioning and cutting actions by the end-effector.
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来源期刊
Computers and Electronics in Agriculture
Computers and Electronics in Agriculture 工程技术-计算机:跨学科应用
CiteScore
15.30
自引率
14.50%
发文量
800
审稿时长
62 days
期刊介绍: Computers and Electronics in Agriculture provides international coverage of advancements in computer hardware, software, electronic instrumentation, and control systems applied to agricultural challenges. Encompassing agronomy, horticulture, forestry, aquaculture, and animal farming, the journal publishes original papers, reviews, and applications notes. It explores the use of computers and electronics in plant or animal agricultural production, covering topics like agricultural soils, water, pests, controlled environments, and waste. The scope extends to on-farm post-harvest operations and relevant technologies, including artificial intelligence, sensors, machine vision, robotics, networking, and simulation modeling. Its companion journal, Smart Agricultural Technology, continues the focus on smart applications in production agriculture.
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