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Remote Control of Greenhouse Vegetable Production with Artificial Intelligence—Greenhouse Climate Irrigation and Crop Production

机译:利用人工智能对温室蔬菜生产进行远程控制-温室气候灌溉和作物生产

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摘要

The global population is increasing rapidly, together with the demand for healthy fresh food. The greenhouse industry can play an important role, but encounters difficulties finding skilled staff to manage crop production. Artificial intelligence (AI) has reached breakthroughs in several areas, however, not yet in horticulture. An international competition on “autonomous greenhouses” aimed to combine horticultural expertise with AI to make breakthroughs in fresh food production with fewer resources. Five international teams, consisting of scientists, professionals, and students with different backgrounds in horticulture and AI, participated in a greenhouse growing experiment. Each team had a 96 m2 modern greenhouse compartment to grow a cucumber crop remotely during a 4-month-period. Each compartment was equipped with standard actuators (heating, ventilation, screening, lighting, fogging, CO2 supply, water and nutrient supply). Control setpoints were remotely determined by teams using their own AI algorithms. Actuators were operated by a process computer. Different sensors continuously collected measurements. Setpoints and measurements were exchanged via a digital interface. Achievements in AI-controlled compartments were compared with a manually operated reference. Detailed results on cucumber yield, resource use, and net profit obtained by teams are explained in this paper. We can conclude that in general AI performed well in controlling a greenhouse. One team outperformed the manually-grown reference.
机译:全球人口与对健康新鲜食品的需求一起迅速增长。温室产业可以发挥重要作用,但要找到熟练的人员来管理农作物生产会遇到困难。人工智能(AI)在几个领域都取得了突破,但是在园艺领域还没有。关于“自主温室”的国际竞赛旨在将园艺专业知识与AI相结合,以更少的资源实现新鲜食品生产的突破。由园艺,人工智能领域不同背景的科学家,专业人员和学生组成的五个国际团队参加了温室栽培实验。每个小组都有一个96 m 2 现代化的温室隔间,可以在4个月内远程种植黄瓜。每个隔间都配备了标准执行器(加热,通风,遮蔽,照明,雾化,CO2供应,水和营养供应)。控制设定点由团队使用他们自己的AI算法远程确定。执行器由过程计算机操作。不同的传感器连续收集测量值。设定值和测量值通过数字接口交换。将AI控制隔室中的成就与手动参考进行比较。本文介绍了团队获得的有关黄瓜产量,资源利用和净利润的详细结果。我们可以得出结论,一般而言,人工智能在控制温室方面表现良好。一支团队的表现优于手动生成的参考。

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