论文标题

传感器放置在土壤水估计中的影响:一项实案研究

Impact of sensor placement in soil water estimation: A real-case study

论文作者

Orouskhani, Erfan, Sahoo, Soumya R., Agyeman, Bernard T., Bo, Song, Liu, Jinfeng

论文摘要

实施闭环灌溉系统的基本要素之一是基于有限数量的可用传感器的土壤水分估计。一个相关的问题是确定安装传感器的最佳位置,以便可以获得良好的土壤水分估计。在我们以前的工作中,采用了观察力的模态程度来解决最佳传感器放置问题,以估算农业流水系统的土壤水分估计。证明最佳放置传感器可以改善土壤水分估计的性能。但是,尚不清楚最佳传感器放置是否可以显着改善实际应用中的土壤水分估计性能。在这项工作中,我们研究了传感器放置在加拿大艾伯塔省莱斯布里奇的实际农业领域中土壤水分估计中的影响。在研究领域的一个实验中,在不同的深度安装了42个土壤水分传感器,以收集一个生长季节的土壤水分测量。开发了一个具有异质土壤参数的三维农产流模型。可观察性的模态程度应用于三维系统,以确定最佳传感器位置。选择扩展的卡尔曼过滤器(EKF)作为数据同化工具,以估计所研究场的土壤水分含量。获得并分析了不同情况的土壤水分估计结果,以研究传感器放置对实际应用中土壤水分估计的性能的影响。

One of the essential elements in implementing a closed-loop irrigation system is soil moisture estimation based on a limited number of available sensors. One associated problem is the determination of the optimal locations to install the sensors such that good soil moisture estimation can be obtained. In our previous work, the modal degree of observability was employed to address the problem of optimal sensor placement for soil moisture estimation of agro-hydrological systems. It was demonstrated that the optimally placed sensors can improve the soil moisture estimation performance. However, it is unclear whether the optimal sensor placement can significantly improve the soil moisture estimation performance in actual applications. In this work, we investigate the impact of sensor placement in soil moisture estimation for an actual agricultural field in Lethbridge, Alberta, Canada. In an experiment on the studied field, 42 soil moisture sensors were installed at different depths to collect the soil moisture measurements for one growing season. A three-dimensional agro-hydrological model with heterogeneous soil parameters of the studied field is developed. The modal degree of observability is applied to the three-dimensional system to determine the optimal sensor locations. The extended Kalman filter (EKF) is chosen as the data assimilation tool to estimate the soil moisture content of the studied field. Soil moisture estimation results for different scenarios are obtained and analyzed to investigate the effects of sensor placement on the performance of soil moisture estimation in the actual applications.

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