Instituto de Automática (INAUT), UNSJ⁻CONICET, Av. Lib. Gral. San Martín 1109 (oeste), San Juan J5400ARL, Argentina.
Instituto Nacional de Tecnología Agropecuaria (INTA), E.E.A. San Juan. Ing. Marcos Zalazar (Calle 11) y Vidart, Pocito, San Juan J5429XAB, Argentina.
Sensors (Basel). 2018 Nov 9;18(11):3847. doi: 10.3390/s18113847.
This article presents a description of the design, development, and implementation of web-based software and dedicated hardware which allows for the remote monitoring and control of a drip irrigation system. The hardware consists of in-field stations which are strategically distributed in the field and equipped with different sensors and communication devices; a weather station and drip irrigation system complete the setup. The web-based software makes it possible to remotely access and process the information gathered by all the stations and the irrigation controller. The proposed system was implemented in a young olive orchard, located in the province of San Juan, an arid region of Argentina. The system was installed and evaluated during the seasons 2014⁻2015 and 2015⁻2016. Four regulated irrigation strategies were proposed in the olive orchard to test its behavior. In this pilot experiment, the precision irrigation system was a useful tool for precisely managing the irrigation process, applying only the required amount of water (precise irrigation). Regulated deficit irrigation experiments, on the other hand, have demonstrated the sensitivity of olives to water restriction. The precision irrigation system made it possible to control soil moisture levels, avoiding water stress in the control treatment.
本文介绍了基于网络的软件和专用硬件的设计、开发和实现,这些软硬件可实现滴灌系统的远程监控。硬件由分布在田间的现场站组成,现场站配备了不同的传感器和通信设备;气象站和滴灌系统完成了整个系统的搭建。基于网络的软件可实现远程访问和处理所有站点和灌溉控制器收集的信息。该系统在阿根廷圣胡安省一个干旱地区的一个年轻橄榄园中实施。该系统在 2014-2015 年和 2015-2016 年的季节中进行了安装和评估。在橄榄园中提出了四种受控制的灌溉策略,以测试系统的行为。在这个试点实验中,精准灌溉系统是精确管理灌溉过程的有用工具,只施加所需的水量(精准灌溉)。受控制的亏缺灌溉实验表明,橄榄对水分限制很敏感。精准灌溉系统可以控制土壤水分水平,避免对照处理中的水分胁迫。