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Automated Irrigation System Using a Wireless Sensor Network and GPRS Module

机译:使用无线传感器网络和GPRS模块的自动灌溉系统

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An automated irrigation system was developed to optimize water use for agricultural crops. The system has a distributed wireless network of soil-moisture and temperature sensors placed in the root zone of the plants. In addition, a gateway unit handles sensor information, triggers actuators, and transmits data to a web application. An algorithm was developed with threshold values of temperature and soil moisture that was programmed into a microcontroller-based gateway to control water quantity. The system was powered by photovoltaic panels and had a duplex communication link based on a cellular-Internet interface that allowed for data inspection and irrigation scheduling to be programmed through a web page. The automated system was tested in a sage crop field for 136 days and water savings of up to 90% compared with traditional irrigation practices of the agricultural zone were achieved. Three replicas of the automated system have been used successfully in other places for 18 months. Because of its energy autonomy and low cost, the system has the potential to be useful in water limited geographically isolated areas.
机译:开发了自动灌溉系统以优化农作物的用水。该系统具有一个分布在植物根部区域的土壤水分和温度传感器的分布式无线网络。另外,网关单元处理传感器信息,触发执行器,并将数据传输到Web应用程序。使用温度和土壤湿度的阈值开发了一种算法,该算法被编程到基于微控制器的网关中以控制水量。该系统由光伏板供电,并具有基于蜂窝-互联网接口的双工通信链接,该链接允许通过网页对数据检查和灌溉调度进行编程。该自动化系统在鼠尾草田中进行了136天的测试,与传统的农业灌溉方式相比,节水量高达90%。自动化系统的三个副本已在其他地方成功使用了18个月。由于其具有能源自主性和低成本,该系统有潜力在水资源有限的地理偏远地区使用。

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