Abdelmoneim Ahmed Ali, Khadra Roula, Derardja Bilal, Dragonetti Giovanna
Sustainable Water and Land Management in Agriculture, CIHEAM Bari, 70010 Valenzano, Bari, Italy.
Micromachines (Basel). 2023 Jan 19;14(2):263. doi: 10.3390/mi14020263.
Monitoring of water retention behavior in soils is an essential process to schedule irrigation. To this end, soil moisture tensiometers usually equipped with mechanical manometers provide an easy and cost-effective monitoring of tension in unsaturated soils. Yet, periodic manual monitoring of many devices is a tedious task hindering the full exploitation of soil moisture tensiometers. This research develops and lab validates a low cost IoT soil moisture tensiometer. The IoT-prototype is capable of measuring tension up to -80 Kpa with R = 0.99 as compared to the same tensiometer equipped with a mechanical manometer. It uses an ESP32 MCU, BMP180 barometric sensor and an SD card module to upload the measured points to a cloud service platform and establishes an online soil water potential curve. Moreover, it stores the reading on a micro-SD card as txt file. Being relatively cheap (76 USD) the prototype allows for more extensive measurements and, thus, for several potential applications such as soil water matric potential mapping, precision irrigation, and smart irrigation scheduling. In terms of energy, the prototype is totally autonomous, using a 2400 mAh Li-ion battery and a solar panel for charging, knowing that it uses deep sleep feature and sends three data points to the cloud each 6 h.
监测土壤中的水分保持行为是安排灌溉的一个重要过程。为此,通常配备机械压力计的土壤湿度张力计能对非饱和土壤中的张力进行简单且经济高效的监测。然而,对许多设备进行定期手动监测是一项繁琐的任务,阻碍了土壤湿度张力计的充分利用。本研究开发并在实验室验证了一种低成本的物联网土壤湿度张力计。与配备机械压力计的同一张力计相比,该物联网原型能够测量高达 -80 Kpa 的张力,相关系数 R = 0.99。它使用 ESP32 微控制器、BMP180 气压传感器和一个 SD 卡模块将测量点上传到云服务平台,并建立在线土壤水势曲线。此外,它将读数作为文本文件存储在微型 SD 卡上。该原型相对便宜(76 美元),可以进行更广泛的测量,因此可用于多种潜在应用,如土壤水基质势测绘、精准灌溉和智能灌溉调度。在能源方面,该原型完全自主,使用 2400 mAh 的锂离子电池和太阳能板充电,它利用深度睡眠功能,每 6 小时向云端发送三个数据点。