Cambra Carlos, Sendra Sandra, Lloret Jaime, Lacuesta Raquel
Instituto de Investigación para la Gestión Integrada de zonas Costeras, Universitat Politècnica de València, 46730 Valencia, Spain.
Department of Signal Theory, Telematics and Communications, Universidad de Granada, 18071 Granada, Spain.
Sensors (Basel). 2018 Apr 25;18(5):1333. doi: 10.3390/s18051333.
Improving the sustainability in agriculture is nowadays an important challenge. The automation of irrigation processes via low-cost sensors can to spread technological advances in a sector very influenced by economical costs. This article presents an auto-calibrated pH sensor able to detect and adjust the imbalances in the pH levels of the nutrient solution used in hydroponic agriculture. The sensor is composed by a pH probe and a set of micropumps that sequentially pour the different liquid solutions to maintain the sensor calibration and the water samples from the channels that contain the nutrient solution. To implement our architecture, we use an auto-calibrated pH sensor connected to a wireless node. Several nodes compose our wireless sensor networks (WSN) to control our greenhouse. The sensors periodically measure the pH level of each hydroponic support and send the information to a data base (DB) which stores and analyzes the data to warn farmers about the measures. The data can then be accessed through a user-friendly, web-based interface that can be accessed through the Internet by using desktop or mobile devices. This paper also shows the design and test bench for both the auto-calibrated pH sensor and the wireless network to check their correct operation.
如今,提高农业可持续性是一项重大挑战。通过低成本传感器实现灌溉过程自动化,有助于在一个受经济成本影响很大的领域推广技术进步。本文介绍了一种自动校准的pH传感器,它能够检测和调整水培农业中使用的营养液pH值的不平衡。该传感器由一个pH探头和一组微型泵组成,微型泵依次注入不同的液体溶液,以维持传感器校准,并从含有营养液的通道采集水样。为实现我们的架构,我们使用一个连接到无线节点的自动校准pH传感器。多个节点组成我们的无线传感器网络(WSN)来控制我们的温室。传感器定期测量每个水培支架的pH值,并将信息发送到一个数据库(DB),该数据库存储并分析数据,以向农民发出措施警告。然后,可以通过一个用户友好的基于网络的界面访问这些数据,使用桌面或移动设备通过互联网即可访问该界面。本文还展示了自动校准pH传感器和无线网络的设计与测试平台,以检查它们的正确运行情况。