将蜜蜂养蜂场远程监控作为危机管理工具

Efthymios C. Rodias, Vasileios Kilimpas
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摘要

在过去几十年中,养蜂业在欧洲和全世界都取得了长足的发展。根据联合国粮农组织(FAO)的数据,2021 年欧洲有 2 510 万个蜂群,其中大部分位于东南部国家。智能技术几乎侵入了农业的每一个支柱领域,包括养蜂业。现代养蜂业的游牧性大于定居性。养蜂业的游牧性要求每年在一个以上的地方监测蜂群的定居情况,以便选择更多的蜂蜜和花粉,促进蜜蜂的整体生长。因此,在使用其他智能应用的同时,对蜜蜂进行远程监测和广泛控制,以防止出现影响蜜蜂生存和/或产量的危机,是非常有效的。本文旨在概述一系列养蜂业自动化系统,作为优化蜂场管理流程的一种手段。通过对四位养蜂人的案例研究,展示了传感器和通信手段如何将来自不同养蜂场的多种蜜蜂相关数据传输到单一控制系统。该方法基于输入/输出数据评估、基于真实数据的风险优先级排序,以及基于潜在风险对养蜂人的反馈。根据结果,最主要的风险与恶劣天气条件、变螨和蜂群健康有关。此外,养蜂人还能优化全年的整体管理、运营和战略规划。最后,应当指出的是,所介绍的远程监控系统永远不会取代传统养蜂人巡视的必要性,但它有助于根据每天的监控数据最大限度地减少巡视次数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote Monitoring of Bee Apiaries as a Tool for Crisis Management
Apiculture has presented significant growth in the last decades in Europe and worldwide. According to the Food and Agriculture Organization (FAO), there were 25.1 million bee colonies in Europe in 2021, with most of them being located in the southeastern countries. Smart technologies have invaded almost every pillar of agriculture, including apiculture. Modern apiculture is rather more nomadic than sedentary. Nomadism in beekeeping requires monitoring the settlement of bee colonies, in more than one place per year, in order to select more honey and pollen and contribute to the overall growth of the bees. To this scope, it is efficient to monitor and have wide control of bees remotely, in parallel with other smart applications, in order to prevent crises that would affect bee survival and/or yield production. The objectives of this paper are to outline a series of automation systems in apiculture used as a means towards the optimization of bee apiary management processes. Four beekeepers’ case studies were used to demonstrate how sensors and communication means transfer multiple bee-related data from various bee apiary locations to a single control system. The methodology was based on input/output data evaluation, risk prioritization based on real data, and feedback to the beekeeper based on the potential risks. Based on the results, the most significant risks are related to bad weather conditions, varroa mites, and bee colony health. Furthermore, the beekeeper is able to optimize the whole management, operations, and strategic planning throughout the year. Last, it should be noted that the presented remote monitoring system will never substitute the necessity of traditional beekeeper visits, but it contributes to minimizing them based on the monitored daily data.
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