Suppr超能文献

智能温室樱桃番茄生产——气候、灌溉、作物产量和品质控制的传感器和人工智能。

Cherry Tomato Production in Intelligent Greenhouses-Sensors and AI for Control of Climate, Irrigation, Crop Yield, and Quality.

机构信息

Business Unit Greenhouse Horticulture, Wageningen University & Research (WUR), 6708PB Wageningen, The Netherlands.

出版信息

Sensors (Basel). 2020 Nov 11;20(22):6430. doi: 10.3390/s20226430.

Abstract

Greenhouses and indoor farming systems play an important role in providing fresh and nutritious food for the growing global population. Farms are becoming larger and greenhouse growers need to make complex decisions to maximize production and minimize resource use while meeting market requirements. However, highly skilled labor is increasingly lacking in the greenhouse sector. Moreover, extreme events such as the COVID-19 pandemic, can make farms temporarily less accessible. This highlights the need for more autonomous and remote-control strategies for greenhouse production. This paper describes and analyzes the results of the second "Autonomous Greenhouse Challenge". In this challenge, an experiment was conducted in six high-tech greenhouse compartments during a period of six months of cherry tomato growing. The primary goal of the greenhouse operation was to maximize net profit, by controlling the greenhouse climate and crop with AI techniques. Five international teams with backgrounds in AI and horticulture were challenged in a competition to operate their own compartment remotely. They developed intelligent algorithms and use sensor data to determine climate setpoints and crop management strategy. All AI supported teams outperformed a human-operated greenhouse that served as reference. From the results obtained by the teams and from the analysis of the different climate-crop strategies, it was possible to detect challenges and opportunities for the future implementation of remote-control systems in greenhouse production.

摘要

温室和室内种植系统在为不断增长的全球人口提供新鲜和营养的食物方面发挥着重要作用。农场越来越大,温室种植者需要做出复杂的决策,以在满足市场需求的同时最大限度地提高产量和减少资源使用。然而,温室领域越来越缺乏高技能劳动力。此外,像 COVID-19 大流行这样的极端事件可能会使农场暂时难以进入。这凸显了温室生产需要更多的自主和远程控制策略。本文描述和分析了第二届“自主温室挑战赛”的结果。在这项挑战赛中,在六个月的樱桃番茄种植期间,在六个高科技温室隔室中进行了实验。温室运营的主要目标是通过使用人工智能技术控制温室气候和作物,最大化净收益。五支具有人工智能和园艺背景的国际团队在远程运营自己隔室的竞赛中接受了挑战。他们开发了智能算法,并使用传感器数据来确定气候设定值和作物管理策略。所有支持人工智能的团队都表现优于作为参考的人工操作温室。从团队获得的结果和对不同气候-作物策略的分析中,可以发现未来在温室生产中实施远程控制系统的挑战和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7470/7698269/215ad64ecf57/sensors-20-06430-g0A1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验