Department of Engineering for Innovation, University of Salento, 73100 Lecce, Italy.
Department of Physics, University of Malta, 2080 Msida, Malta.
Sensors (Basel). 2022 Oct 14;22(20):7805. doi: 10.3390/s22207805.
Soil monitoring is a key topic from several perspectives, such as moisture level control for irrigation management and anti-contamination purposes. Monitoring the latter is becoming even more important due to increasing environmental pollution. As a direct consequence, there is a strong demand for innovative monitoring systems that are low cost, provide for quasi-real time and in situ monitoring, high sensitivity, and adequate accuracy. Starting from these considerations, this paper addresses the implementation of a microwave reflectometry based-system utilizing a customized bifilar probe and a miniaturized Vector Network Analyzer (m-VNA). The main objective is to relate frequency-domain (FD) measurements to the features of interest, such as the water content and/or the percentage of some polluting substances, through an innovative automatable procedure to retrieve the Debye dielectric parameters of the soil under different conditions. The results from this study confirm the potential of microwave reflectometry for moisture monitoring and contamination detection.
土壤监测是一个多方面的关键议题,例如灌溉管理和防污染目的的水分水平控制。由于环境污染的不断加剧,监测后者变得更加重要。因此,人们强烈需要创新的监测系统,这些系统应具有低成本、准实时和原位监测、高灵敏度和足够准确性等特点。基于这些考虑,本文提出了一种基于微波反射计的系统的实现方法,该系统利用定制的双线探头和小型化矢量网络分析仪(m-VNA)。主要目标是通过一种创新的自动化程序,将频域(FD)测量与感兴趣的特征(如水分含量和/或某些污染物质的百分比)相关联,以获取不同条件下土壤的 Debye 介电参数。这项研究的结果证实了微波反射计在湿度监测和污染检测方面的潜力。