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基于物联网的温室藏红花种植系统。

Internet of things (IoT) based saffron cultivation system in greenhouse.

机构信息

Scool of System and Technology, University of Management and Technology, Lahore, 54000, Pakistan.

Computer Science and Information Technology, Abu Dhabi University, Abu Dhabi, United Arab Emirates.

出版信息

Sci Rep. 2024 Sep 29;14(1):22589. doi: 10.1038/s41598-024-69513-1.

Abstract

Saffron is the world's most expensive and legendary crop that is widely used in cuisine, drugs, and cosmetics. Therefore, the demand for saffron is increasing globally day by day. Despite its massive demand the cultivation of saffron has dramatically decreased and grown in only a few countries. Saffron is an environment-sensitive crop that is affected by various factors including rapid change in climate, light intensity, pH level, soil moisture, salinity level, and inappropriate cultivation techniques. It is not possible to control many of these environmental factors in traditional farming. Although, many innovative technologies like Artificial Intelligence and Internet of Things (IoT) have been used to enhance the growth of saffron still, there is a dire need for a system that can overcome primary issues related to saffron growth. In this research, we have proposed an IoT-based system for the greenhouse to control the numerous agronomical variables such as corm size, temperature, humidity, pH level, soil moisture, salinity, and water availability. The proposed architecture monitors and controls environmental factors automatically and sends real-time data from the greenhouse to the microcontroller. The sensed values of various agronomical variables are compared with threshold values and saved at cloud for sending to the farm owner for efficient management. The experiment results reveal that the proposed system is capable to maximize saffron production in the greenhouse by controlling environmental factors as per crop needs.

摘要

藏红花是世界上最昂贵和最具传奇色彩的作物之一,广泛应用于烹饪、药物和化妆品。因此,全球对藏红花的需求与日俱增。尽管需求量很大,但藏红花的种植面积却急剧减少,仅在少数几个国家有所增长。藏红花是一种对环境敏感的作物,受多种因素影响,包括气候、光照强度、pH 值、土壤湿度、盐度和不当的种植技术的快速变化。在传统农业中,许多环境因素无法控制。尽管人工智能和物联网(IoT)等许多创新技术已被用于促进藏红花的生长,但仍迫切需要一种能够克服与藏红花生长相关的主要问题的系统。在这项研究中,我们提出了一种基于物联网的温室系统,用于控制鳞茎大小、温度、湿度、pH 值、土壤湿度、盐分和水可用性等众多农艺变量。所提出的架构自动监测和控制环境因素,并将温室的实时数据发送到微控制器。各种农艺变量的感测值与阈值进行比较,并保存在云中,以便发送给农场主进行有效管理。实验结果表明,该系统能够通过根据作物需求控制环境因素来最大限度地提高温室中的藏红花产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179f/11439948/e447aa68df0b/41598_2024_69513_Fig1_HTML.jpg

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