实施基于物联网的碳中和模块化智能温室

Seok-Keun Park, Kil-Su Han, Min-Soon Lee, Changsun Shin
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摘要

近年来,在数字农业中,基于物联网的大棚类型和利用方式正在广泛推广,利用智能技术实现大棚的现代化、大型化甚至工厂化。但是,目前还没有针对智能温室的数据采集设备和温室的大小或形状提出具体的标准化方案。也就是说,缺少设施设备的标准数据,如根据温室的大小,传感器和设备的类型和数量,温室建筑薄膜的类型和适合作物的材料以及碳中和。因此,在本研究中,测试了物联网设备的实施、安装和数量对数据采集的适用性,并通过数据采集和通信方法的实施提出了一些标准技术。此外,介绍了占现有大棚90%左右的PE、PVC和EVA的冲击强度、拉伸、撕裂、伸长率、透光率和寿命问题,并介绍了薄膜大棚的形状、尺寸和环境问题。在文本中呈现。本文针对温室规模、作物类型、温室寿命、薄膜等环境问题,采用纳米材料薄膜构建标准化的碳中性模块化智能温室,并与现有温室进行性能对比分析。通过这一点,我们提出了一个模块化的温室,可以在温室的大小和农家乐作物的形状上自由扩展或缩小,并且寿命延长和标准化。最后,对使用现有PE、PVC和EVA薄膜的温室的平均特性与使用新型碳中性纳米材料的温室的特性进行了比较和评述,并提出了一个支持碳中性的可扩展物联网温室的实施计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of IoT-based carbon-neutral modular smart greenhouse
Recently, in digital agriculture, the types and utilization of greenhouses based on IoT are spreading, and greenhouses are being modernized, enlarged, and even factoryized using smart technology. However, a specific standardization plan has not been proposed according to the equipment for data collection in the smart greenhouse and the size or shape of the greenhouse. In other words, there is a lack of standard data for facility equipment, such as the type and number of sensors and equipment according to the size of the greenhouse, the type of greenhouse construction film and materials suitable for crops and carbon neutrality. Therefore, in this study, the suitability of the implementation, installation and quantity of IoT equipment for data collection was tested, and some standard technologies were presented through the implementation of data collection and communication methods. In addition, impact strength, tensile, tear, elongation, light transmittance, and lifespan issues for PE, PVC, and EVA, which account for about 90% of existing greenhouses, were presented, and the shape, size, and environmental problems of greenhouses made of films were presented. presented in the text. In this research paper, a standardized carbon-neutral modular smart greenhouse using nano-material film was implemented as a solution to environmental problems such as greenhouse size, farm crop type, greenhouse lifespan, and film, and its performance with existing greenhouses was analyzed and presented. Through this, we propose a modularized greenhouse that can be expanded or reduced freely without distinction in the size of the greenhouse or the shape of farmhouse crops, and the lifespan is extended and standardized. Finally, the average characteristics of greenhouses using existing PE, PVC, and EVA films and the characteristics of greenhouses using new carbon-neutral nanomaterials are compared and reviewed, and a plan to implement an expandable IoT greenhouse that supports carbon neutrality is proposed.
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