It is well-known that information and communication technologies enable many tasks in the context of precision agriculture. In fact, more and more farmers and '/> New trends in precision agriculture: a novel cloud-based system for enabling data storage and agricultural task planning and automation
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New trends in precision agriculture: a novel cloud-based system for enabling data storage and agricultural task planning and automation

机译:精密农业新趋势:基于新型的基于云的系统,用于实现数据存储和农业任务规划和自动化

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Heading>Abstract/Heading>Para ID="Par1">It is well-known that information and communication technologies enable many tasks in the context of precision agriculture. In fact, more and more farmers and food and agriculture companies are using precision agriculture-based systems to enhance not only their products themselves, but also their means of production. Consequently, problems arising from large amounts of data management and processing are arising. It would be very useful to have an infrastructure that allows information and agricultural tasks to be efficiently shared and handled. The cloud computing paradigm offers a solution. In this study, a cloud-based software architecture is proposed with the aim of enabling a complete crop management system to be deployed and validated. Such architecture includes modules developed by using Google App Engine, which allows the information to be easily retrieved and processed and agricultural tasks to be properly defined and planned. Additionally, Google鈥檚 Datastore (which ensures a high scalability degree), hosts both information that describes such agricultural tasks and agronomic data. The architecture has been validated in a system that comprises a wireless sensor network with fixed nodes and a mobile node on an unmanned aerial vehicle (UAV), deployed in an agricultural farm in the Region of Murcia (Spain). Such a network allows soil water and plant status to be monitored. The UAV (capable of executing missions defined by an administrator) is useful for acquiring visual information in an autonomous manner (under operator supervision, if needed). The system performance has been analysed and results that demonstrate the benefits of using the proposed architecture are detailed./Para>
机译:&标题>摘要& /标题>& para id =“par1”>众所周知,信息和通信技术能够在精密农业的背景下实现许多任务。事实上,越来越多的农民和粮食和农业公司正在采用精密农业的系统,不仅为他们的产品本身而增强,而且还为他们的生产方式增强。因此,出现了大量数据管理和处理产生的问题。具有允许有效共享和处理信息和农业任务的基础架构是非常有用的。云计算PARADIGM提供解决方案。在这项研究中,提出了一种基于云的软件架构,其目的是能够部署和验证完整的裁剪管理系统。此类架构包括通过使用Google App Engine开发的模块,这允许轻松检索和处理和处理和处理和计划的农业任务。此外,Google鈥檚数据存储(可确保高可扩展性程度),托管描述此类农业任务和农艺数据的两个信息。该架构已经在一个系统中验证,该系统包括具有固定节点的无线传感器网络和在无人机(UAV)上的移动节点,部署在穆尔西亚地区(西班牙)的农业农场中。这种网络允许监测土壤水和植物地位。 UAV(能够执行由管理员定义的任务)对于以自主方式获取可视信息(如果需要,则在运营商监督下)。已经分析了系统性能,并详细说明了使用所提出的架构的益处的结果。& / para>

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