Tian Hao, Gao Chao, Zhang Xin, Yu Chongchong, Xie Tao
School of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, China.
China Light Industry Key Laboratory of Industrial Internet and Big Data, Beijing Technology and Business University, Beijing 102448, China.
Micromachines (Basel). 2022 Aug 29;13(9):1427. doi: 10.3390/mi13091427.
To address the problems in the calibration of soil water content sensors, in this study, we designed a low-cost edge electromagnetic field induction (EEMFI) sensor for soil water content measurement and proposed a normalized calibration method to eliminate the errors caused by the measurement sensor's characteristics and improve the probe's consistency, replaceability, and calibration efficiency. The model calibration curve-fitting coefficients of the EEMFI sensors were above 0.98, which indicated a significant correlation. The experimental results of the static and dynamic characteristics showed that the measurement range of the sensor varied from 0% to 100% saturation, measurement accuracy was within ±2%, the maximum value of the extreme difference of the stability test was 1.09%, the resolution was 0.05%, the delay time was 3.9 s, and the effective measurement diameter of the EEMFI sensor probe was 10 cm. The linear fit coefficient of determination of the results was greater than 0.99, and the maximum absolute error of the measurement results with the drying method was less than ±2%, which meets the requirements of soil water content measurement in agriculture and forestry fields. The field experiment results further showed that the EEMFI sensor can accurately respond to changes in soil water content, indicating that the EEMFI sensor is reliable.
为解决土壤水分传感器校准中存在的问题,本研究设计了一种用于测量土壤水分含量的低成本边缘电磁场感应(EEMFI)传感器,并提出了一种归一化校准方法,以消除测量传感器特性引起的误差,提高探头的一致性、可替换性和校准效率。EEMFI传感器的模型校准曲线拟合系数高于0.98,表明相关性显著。静态和动态特性的实验结果表明,该传感器的测量范围为0%至100%饱和,测量精度在±2%以内,稳定性测试极差的最大值为1.09%,分辨率为0.05%,延迟时间为3.9 s,EEMFI传感器探头的有效测量直径为10 cm。结果的线性拟合决定系数大于0.99,与烘干法相比测量结果的最大绝对误差小于±2%,满足农林领域土壤水分含量测量的要求。田间试验结果进一步表明,EEMFI传感器能够准确响应土壤水分含量的变化,表明EEMFI传感器是可靠的。