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智能室内农业中基于物联网的节能照明控制系统

Energy-Efficient IoT-Based Light Control System in Smart Indoor Agriculture.

作者信息

Hadj Abdelkader Oussama, Bouzebiba Hadjer, Pena Danilo, Aguiar António Pedro

机构信息

Research Center for Systems and Technologies (SYSTEC), ARISE, Faculdade de Engenharia, Universidade do Porto, Rua Dr. Roberto Frias, s/n, 4200-465 Porto, Portugal.

出版信息

Sensors (Basel). 2023 Sep 5;23(18):7670. doi: 10.3390/s23187670.

Abstract

Indoor agriculture is emerging as a promising approach for increasing the efficiency and sustainability of agri-food production processes. It is currently evolving from a small-scale horticultural practice to a large-scale industry as a response to the increasing demand. This led to the appearance of plant factories where agri-food production is automated and continuous and the plant environment is fully controlled. While plant factories improve the productivity and sustainability of the process, they suffer from high energy consumption and the difficulty of providing the ideal environment for plants. As a small step to address these limitations, in this article we propose to use internet of things (IoT) technologies and automatic control algorithms to construct an energy-efficient remote control architecture for grow lights monitoring in indoor farming. The proposed architecture consists of using a master-slave device configuration in which the slave devices are used to control the local light conditions in growth chambers while the master device is used to monitor the plant factory through wireless communication with the slave devices. The devices all together make a 6LoWPAN network in which the RPL protocol is used to manage data transfer. This allows for the precise and centralized control of the growth conditions and the real-time monitoring of plants. The proposed control architecture can be associated with a decision support system to improve yields and quality at low costs. The developed method is evaluated in emulation software (Contiki-NG v4.7),its scalability to the case of large-scale production facilities is tested, and the obtained results are presented and discussed. The proposed approach is promising in dealing with control, cost, and scalability issues and can contribute to making smart indoor agriculture more effective and sustainable.

摘要

室内农业正在成为一种提高农业食品生产过程效率和可持续性的有前景的方法。随着需求的不断增加,它目前正从一种小规模园艺实践发展成为一个大规模产业。这导致了植物工厂的出现,在植物工厂中,农业食品生产是自动化且连续的,植物生长环境得到完全控制。虽然植物工厂提高了生产过程的生产力和可持续性,但它们存在能源消耗高以及难以给植物提供理想环境的问题。作为解决这些限制的一小步,在本文中我们提议使用物联网(IoT)技术和自动控制算法来构建一个用于室内种植中生长灯监测的节能远程控制架构。所提议的架构包括使用主从设备配置,其中从设备用于控制生长室中的局部光照条件,而主设备用于通过与从设备的无线通信来监测植物工厂。这些设备共同构成一个6LoWPAN网络,在该网络中使用RPL协议来管理数据传输。这允许对生长条件进行精确且集中的控制以及对植物进行实时监测。所提议的控制架构可以与一个决策支持系统相关联,以低成本提高产量和质量。所开发的方法在仿真软件(Contiki-NG v4.7)中进行了评估,测试了其对大规模生产设施情况的可扩展性,并展示和讨论了所获得的结果。所提议的方法在处理控制、成本和可扩展性问题方面很有前景,并且有助于使智能室内农业更有效和可持续。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/052b/10534542/dc76212dc02f/sensors-23-07670-g001.jpg

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