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基于物联网并使用ESP-NOW协议的蜂群远程监测

Bee colony remote monitoring based on IoT using ESP-NOW protocol.

作者信息

Kviesis Armands, Komasilovs Vitalijs, Ozols Niks, Zacepins Aleksejs

机构信息

Department of Computer Systems, Faculty of Information Technologies, Latvia University of Life Sciences and Technologies, Jelgava, Latvia.

Institute of Plant Protection Research 'Agrihorts', Latvia University of Life Sciences and Technologies, Jelgava, Latvia.

出版信息

PeerJ Comput Sci. 2023 Apr 27;9:e1363. doi: 10.7717/peerj-cs.1363. eCollection 2023.

Abstract

Information and communication technologies, specifically the Internet of Things (IoT), have been widely used in many agricultural practices, including beekeeping, where the adoption of advanced technologies has an increasing trend. Implementation of precision apiculture methods into beekeeping practice depends on availability and cost-effectiveness of honey bee colony monitoring systems. This study presents a developed bee colony monitoring system based on the IoT concept and using ESP8266 and ESP32 microchips. The monitoring system uses the ESP-NOW protocol for data exchange within the apiary and a GSM (Global System for Mobile communication)/GPRS (General packet radio service) external interface for packet-based communication with a remote server on the Internet. The local sensor network was constructed in a star type logical topology with one central node. The use of ESP-NOW protocol as a communication technology added an advantage of longer communication distance between measurement nodes in comparison to a previously used Wi-Fi based approach and faster data exchange. Within the study, five monitoring devices were used for real-time bee colony monitoring in Latvia. The bee colony monitoring took place from 01.06.2022 till 31.08.2022. Within this study, the distance between ESP-NOW enabled devices and power consumption of the monitoring and main nodes were evaluated as well. As a result, it was concluded that the ESP-NOW protocol is well suited for the IoT solution development for honeybee colony monitoring. It reduces the time needed to transmit data between nodes (over a large enough distance), therefore ensuring that the measurement nodes operate in an even lower power consumption mode.

摘要

信息和通信技术,特别是物联网(IoT),已广泛应用于许多农业实践中,包括养蜂业,在养蜂业中采用先进技术的趋势正在增加。将精准养蜂方法应用于养蜂实践取决于蜜蜂蜂群监测系统的可用性和成本效益。本研究提出了一种基于物联网概念并使用ESP8266和ESP32微芯片开发的蜂群监测系统。该监测系统使用ESP-NOW协议在蜂场内进行数据交换,并使用GSM(全球移动通信系统)/GPRS(通用分组无线服务)外部接口与互联网上的远程服务器进行基于分组的通信。本地传感器网络采用具有一个中心节点的星型逻辑拓扑结构构建。与先前使用的基于Wi-Fi的方法相比,使用ESP-NOW协议作为通信技术增加了测量节点之间更长通信距离的优势以及更快的数据交换。在该研究中,五个监测设备用于拉脱维亚的蜂群实时监测。蜂群监测于2022年6月1日至2022年8月31日进行。在本研究中,还评估了启用ESP-NOW的设备之间的距离以及监测节点和主节点的功耗。结果得出结论,ESP-NOW协议非常适合用于蜜蜂蜂群监测的物联网解决方案开发。它减少了节点之间传输数据所需的时间(在足够大的距离上),从而确保测量节点以更低的功耗模式运行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8094/10280558/b24f0fa8e009/peerj-cs-09-1363-g001.jpg

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