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Agricultural cyber-physical system enabled for remote management of solar-powered precision irrigation

机译:农业网络物理系统,可实现太阳能精密灌溉的远程管理

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Recently, several works have been focused on designing and optimising the use of Agricultural Cyber-Physical System (ACPS). Therefore, a variety of ACPSs has been developed for the management of different services in precision agriculture. In this context, we present a new approach to the cyberisation of solar photovoltaic water systems (SPVWS) for remote irrigation management. A typical ACPS architecture design is adopted and extended to support the solar irrigation facility. The distributed architecture is based on the client-server paradigm using Vert.x as a reactive platform, which guarantees a bi-directional communication between the operational level deployed in the greenhouse and the supervisory level hosted in the cloud. The operational level deploys embedded devices which host a set of event-driven components responsible for transmitting external resources data, handling notifications, and executing orders provided at the supervisory level. The cloud incorporates several reactive micro-services performing advanced analyses and data mining in order to support remote control tasks. Within this architecture, users with different roles can remotely monitor and manage the activities of the SPVWS. A successful case study of an experimental greenhouse demonstrated the feasibility of the approach in term of low-cost and good performance in task management. (C) 2018 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:最近,几项作品专注于设计和优化农业网络物理系统(ACP)的使用。因此,已开发出各种ACPS在精密农业中管理不同服务。在这种情况下,我们向远程灌溉管理提供了一种新的太阳能光伏水系统(SPVWS)的汇率方法。采用典型的ACPS架构设计并扩展以支持太阳能灌溉设施。分布式架构基于客户端 - 服务器范例使用Vert.x作为反应平台,可确保在温室部署的操作级别和云中托管的监控级别之间的双向通信。操作级别部署嵌入式设备,该设备主持一组事件驱动的组件,该组件负责发送外部资源数据,处理通知和在监督级别提供的订单。云包含几种执行高级分析和数据挖掘的反应性微型服务,以支持远程控制任务。在此架构中,具有不同角色的用户可以远程监视和管理SPVWS的活动。成功对实验温室的案例研究表明,在任务管理方面的低成本和良好性能方面都表明了这种方法的可行性。 (c)2018年IAGRE。 elsevier有限公司出版。保留所有权利。

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