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首页> 外文期刊>Journal of Hydrology >Evaluation of a low-cost soil water content sensor for wireless network applications
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Evaluation of a low-cost soil water content sensor for wireless network applications

机译:评估用于无线网络应用的低成本土壤水分传感器

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Wireless sensor networks area promising new in situ measurement technology for monitoring soil water content changes with a high spatial and temporal resolution for large areas. However, to realise sensor networks at the small. basin scale (e.g. 500 sensors for an area of 25 ha), the costs for a single sensor have to be minimised. Furthermore, the sensor technique should be robust and operate with a low energy consumption to achieve a long operation time of the network. This paper evaluates a tow-cost soil water content sensor (ECH2O probe model EC-5, Decagon Devices Inc., Pullman, WA) using laboratory as well. as field experiments. The field experiment features a comparison of water content measurements of a forest soil at 5 cm depth using TDR and EC-5 sensors. The laboratory experiment is based on a standardized sensor characterisation methodology, which uses liquid standards with a known dielectric permittivity. The results of the laboratory experiment showed that the EC-5 sensor has good output voltage sensitivity below a permittivity of 40, but is less sensitive when permittivity is higher. The experiments also revealed a distinct dependence of the sensor reading on the applied supply voltage. Therefore, a function was obtained that allows the permittivity to be determined from the sensor reading and the supply voltage. Due to the higher frequency of the EC-5 sensor, conductivity effects were less pronounced compared to the older EC-20 sensor (also Decagon Devices Inc.). However, the EC-5 sensor reading was significantly influenced by temperature changes. The field experiment showed distinct differences between TDR and EC-5 measurements that could be explained to a large degree with the correction functions derived from the laboratory measurements. Remaining errors are possibly due to soil variability and discrepancies between measurement volume and installation depth. Overall, we conclude that the EC-5 sensor is suitable for wireless network applications. However, the results of this paper also suggest that temperature and electric conductivity effects on the sensor reading have to be compensated using appropriate correction functions. (C) 2007 Elsevier B.V. All rights reserved.
机译:无线传感器网络有望在大范围内以高时空分辨率监测土壤含水量变化的新型现场测量技术。但是,要实现传感器网络的规模很小。盆地规模(例如500个传感器,占地25公顷),单个传感器的成本必须降到最低。此外,传感器技术应坚固耐用并以低能耗运行,以实现较长的网络运行时间。本文还使用实验室对拖曳成本土壤水含量传感器(ECH2O探针型号EC-5,Decagon Devices Inc.,Pullman,WA)进行了评估。作为现场实验。野外实验的特点是使用TDR和EC-5传感器比较了5厘米深度的森林土壤的水分含量。实验室实验基于标准化的传感器表征方法,该方法使用具有已知介电常数的液体标准液。实验室实验的结果表明,EC-5传感器在介电常数40以下时具有良好的输出电压灵敏度,但在介电常数较高时灵敏度较低。实验还揭示了传感器读数对所施加的电源电压的明显依赖性。因此,获得了一种功能,该功能允许根据传感器读数和电源电压确定介电常数。由于EC-5传感器的频率较高,因此与旧版EC-20传感器(也是Decagon Devices Inc.)相比,电导率效应不太明显。但是,EC-5传感器的读数受温度变化的影响很大。现场实验表明,TDR和EC-5测量值之间存在明显差异,可以用实验室测量值得出的校正函数在很大程度上解释这一点。剩余的错误可能是由于土壤的可变性以及测量体积和安装深度之间的差异所致。总体而言,我们得出结论,EC-5传感器适用于无线网络应用。但是,本文的结果还表明,必须使用适当的校正功能来补偿温度和电导率对传感器读数的影响。 (C)2007 Elsevier B.V.保留所有权利。

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