Kong Qingzhao, Chen Hongli, Mo Yi-Lung, Song Gangbing
Department of Mechanical Engineering, University of Houston, Houston, TX 77204, USA.
School of Materials and Textiles, Zhejiang SCI-TECH University, Hangzhou 310018, China.
Sensors (Basel). 2017 Oct 20;17(10):2395. doi: 10.3390/s17102395.
A quantitative understanding of soil water content or soil water status is of great importance to many applications, such as landslide monitoring, rockfill dam health monitoring, precision agriculture, etc. In this paper, a feasibility study was conducted to monitor the soil water content in real time using permanent embedded piezoceramic-based transducers called smart aggregates (SAs). An active sensing approach using a customized swept acoustic wave with a frequency range between 100 Hz and 300 kHz was used to study the wave attenuation in the soil in correlation to soil moisture levels. Two sandy soil specimens, each embedded with a pair of SAs, were made in the laboratory, and the water percentage of the soil specimens was incrementally decreased from 15% to 3% during the tests. Due to the change of the soil water status, the damping property of the soil correspondingly changes. The change of the damping property results in the variation of the acoustic wave attenuation ratios. A wavelet packet-based energy index was adopted to compute the energy of the signal captured by the SA sensor. Experimental results show a parabolic growth curve of the received signal energy vs. the water percentage of the soil. The feasibility, sensitivity, and reliability of the proposed method for in-situ monitoring of soil water status were discussed.
对土壤含水量或土壤水分状况进行定量了解对许多应用都非常重要,如滑坡监测、堆石坝健康监测、精准农业等。本文进行了一项可行性研究,以使用称为智能骨料(SAs)的永久性嵌入式压电陶瓷基传感器实时监测土壤含水量。采用一种主动传感方法,利用频率范围在100 Hz至300 kHz之间的定制扫频声波来研究土壤中的波衰减与土壤湿度水平的相关性。在实验室制作了两个砂土试样,每个试样都嵌入了一对SAs,在试验过程中,土壤试样的含水量从15%逐渐降低到3%。由于土壤水分状况的变化,土壤的阻尼特性相应改变。阻尼特性的变化导致声波衰减率的变化。采用基于小波包的能量指数来计算SA传感器捕获信号的能量。实验结果显示了接收信号能量与土壤含水量之间的抛物线增长曲线。讨论了所提出的原位监测土壤水分状况方法的可行性、灵敏度和可靠性。