Department of Agricultural and Food Sciences, Alma Mater Studiorum-University of Bologna, 40127 Bologna, Italy.
Sensors (Basel). 2023 Feb 28;23(5):2647. doi: 10.3390/s23052647.
In a climate change scenario and under a growing interest in Precision Agriculture, it is more and more important to map and record seasonal trends of the respiration of cropland and natural surfaces. Ground-level sensors to be placed in the field or integrated into autonomous vehicles are of growing interest. In this scope, a low-power IoT-compliant device for measurement of multiple surface CO2 and WV concentrations have been designed and developed. The device is described and tested under controlled and field conditions, showing ready and easy access to collected values typical of a cloud-computing-based approach. The device proved to be usable in indoor and open-air environments for a long time, and the sensors were arranged in multiple configurations to evaluate simultaneous concentrations and flows, while the low-cost, low-power (LP IoT-compliant) design is achieved by a specific design of the printed circuit board and a firmware code fitting the characteristics of the controller.
在气候变化的背景下,随着人们对精准农业日益增长的兴趣,对农田和自然表面呼吸的季节性趋势进行测绘和记录变得越来越重要。放置在田间或集成到自动驾驶车辆中的地面传感器越来越受到关注。在这方面,我们设计和开发了一种符合物联网低功耗要求的设备,用于测量多种表面的 CO2 和 WV 浓度。该设备在受控和现场条件下进行了描述和测试,展示了基于云计算的典型方法的便捷访问。该设备已被证明可在室内和露天环境中长时间使用,并且传感器可以以多种配置进行排列,以评估同时的浓度和流量,而低成本、低功耗(符合物联网要求)的设计是通过特定的印刷电路板设计和适合控制器特性的固件代码实现的。