A Scalable Distributed System for Precision Irrigation

M. Amoretti, Dario Lodi Rizzini, Gabriele Penzotti, S. Caselli
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引用次数: 2

Abstract

The level of adoption of Precision Agriculture (PA) technologies is still very different from one country to another and from one region to another in the same country. A major challenge is to develop PA from a best practice pursued by a minority of enlightened farmers to a widespread practice with sizeable impact on the use of environmental resources. One of the obstacles hindering PA is the lack of quantitative data readily accessible to farmers to guide their daily operations. In this paper, we present the information system developed within project POSITIVE to support and enhance precision irrigation across the whole Emilia-Romagna region. To this purpose, the POSITIVE information system establishes a service transforming satellite and sensor data into biophysical parameters and vegetation indices with full regional coverage. These data are automatically fed into a public irrigation advisory service (Irrinet+) thereby enabling precision irrigation and fertigation on a regional scale. Irrigation maps can be sent as advice to farmers or directly commanded to registered irrigation machines. The architecture of the distributed information system and the open protocols developed to achieve scalability and enable interaction of multiple heterogeneous components are reported in the paper.
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一种可扩展的分布式精准灌溉系统
精准农业(PA)技术的采用水平在一个国家与另一个国家之间以及同一国家的一个地区与另一个地区之间仍然存在很大差异。一个主要的挑战是将PA从少数开明农民追求的最佳做法发展为对环境资源利用产生重大影响的广泛做法。阻碍PA的障碍之一是缺乏农民可以随时获得的定量数据来指导他们的日常操作。在本文中,我们介绍了在POSITIVE项目中开发的信息系统,以支持和提高整个艾米利亚-罗马涅地区的精确灌溉。为此目的,POSITIVE信息系统建立了一项服务,将卫星和传感器数据转换为全区域覆盖的生物物理参数和植被指数。这些数据自动输入公共灌溉咨询服务(Irrinet+),从而实现区域范围内的精确灌溉和施肥。灌溉地图可以作为建议发送给农民,也可以直接命令注册的灌溉机器。本文介绍了分布式信息系统的体系结构和为实现可扩展性和多异构组件的交互而开发的开放协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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