NSW Department of Primary Industries, Orange Agricultural Institute, Orange, NSW 2800, Australia.
Sensors (Basel). 2021 Nov 29;21(23):7963. doi: 10.3390/s21237963.
IoT-enabled devices are making it easier and cheaper than ever to capture in situ environmental data and deliver these data-in the form of graphical visualisations-to farmers in a matter of seconds. In this work we describe an aquaculture focused environmental monitoring network consisting of LoRaWAN-enabled atmospheric and marine sensors attached to buoys on Clyde River, located on the South Coast of New South Wales, Australia. This sensor network provides oyster farmers operating on the river with the capacity to make informed, accurate and rapid decisions that enhance their ability to respond to adverse environmental events-typically flooding and heat waves. The system represents an end-to-end approach that involves deploying a sensor network, analysing the data, creating visualisations in collaboration with farmers and delivering them to them in real-time via a website known as FarmDecisionTECH®. We compared this network with previously available infrastructure, the results of which demonstrate that an in situ weather station was ∼5 ∘C hotter than the closest available real-time weather station (∼20 km away from Clyde River) during a summertime heat wave. Heat waves can result in oysters dying due to exposure if temperatures rise above 30 ∘C for extended periods of time (such as heat waves), which will mean a loss in income for the farmers; thus, this work stresses the need for accurate in situ monitoring to prevent the loss of oysters through informed farm management practices. Finally, an approach is proposed to present high-dimensional datasets captured from the sensor network to oyster farmers in a clear and informative manner.
物联网(IoT)使现场环境数据的捕获变得更加容易和廉价,并且可以在几秒钟内以图形可视化的形式将这些数据提供给农民。在这项工作中,我们描述了一个专注于水产养殖的环境监测网络,该网络由附着在澳大利亚新南威尔士州南海岸克莱德河浮标上的 LoRaWAN 支持的大气和海洋传感器组成。该传感器网络为在河上运营的牡蛎养殖户提供了做出明智、准确和快速决策的能力,增强了他们应对不利环境事件(通常是洪水和热浪)的能力。该系统代表了一种端到端的方法,涉及部署传感器网络、分析数据、与农民合作创建可视化效果,并通过一个名为 FarmDecisionTECH®的网站实时将其交付给他们。我们将这个网络与之前的基础设施进行了比较,结果表明,在夏季热浪期间,一个现场气象站比最近的可用实时气象站(距离克莱德河约 20 公里)高约 5 ∘C。如果温度长时间(如热浪期间)上升到 30 ∘C 以上,热浪会导致牡蛎因暴露而死亡,这将意味着农民收入的损失;因此,这项工作强调了需要进行准确的现场监测,以通过明智的农场管理实践防止牡蛎死亡。最后,提出了一种向牡蛎养殖户以清晰和信息丰富的方式呈现从传感器网络捕获的高维数据集的方法。