一种用于土壤湿度监测的无电池超高频RFID传感器

IF 2.3 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Mohammed A. Alsultan;Joan Melià-Seguí;Josep Parrón-Granados;Sergio López-Soriano
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引用次数: 0

摘要

土壤水分监测对于优化灌溉策略、提高作物产量和节约精准农业水资源至关重要。传统的传感方法通常依赖于电池供电的设备,需要维护和定期更换。这项工作介绍了一种无电池的超高频射频识别(UHF RFID)土壤湿度传感器,该传感器利用RFID技术和一个用于电容传感的交叉电容(IDC)。该传感器集成了弯曲偶极子天线和EM4152 RFID芯片,无需外部电源即可无线监测土壤体积含水量(VWC)。通过受控土壤湿度实验验证了传感器的性能,其中电容读数与商用TEROS 10土壤湿度传感器的参考测量值相关。传感器使用三种不同的土壤类型进行测试和校准:沙质、粘土和商业组合基质。结果表明,在所有土壤类型中,TEROS 10测量值与测定值具有较强的线性相关性,决定系数分别为R2 = 0.9648(沙质)、R2 = 0.9512(粘土)和R2 = 0.9444(复合型)。此外,在不同含水量和高达3.5米的读取范围下进行的测试验证了传感器在不同土壤条件下的稳健性。研究结果强调了基于rfid的无电池传感技术在农业应用中可持续和免维护土壤湿度监测的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Battery-Less UHF RFID Sensor for Soil Moisture Monitoring
Soil moisture monitoring is essential for optimizing irrigation strategies, enhancing crop yields, and conserving water resources in precision agriculture. Traditional sensing methods often rely on battery-powered devices, which require maintenance and periodic replacement. This work introduces a batteryless ultrahigh frequency radio frequency identification (UHF RFID) soil moisture sensor that leverages RFID technology and an interdigitated capacitor (IDC) for capacitive sensing. The proposed sensor integrates a meandered dipole antenna and an EM4152 RFID chip, enabling wireless monitoring of soil Volumetric Water Content (VWC) without the need for an external power source. The sensor’s performance is validated through controlled soil moisture experiments, where capacitance readings are correlated with reference measurements from the commercial TEROS 10 soil moisture sensor. The sensor was tested and calibrated using three different soil types: sandy, clay, and a commercial combo substrate. The results demonstrate strong linear correlations with TEROS 10 measurements across all soil types, with coefficients of determination of R2 = 0.9648 (sandy), R2 = 0.9512 (clay), and R2 = 0.9444 (combo). Furthermore, tests conducted at varying water contents and a read range of up to 3.5 meters validate the sensor’s robustness across different soil conditions. The findings highlight the potential of battery-less RFID-based sensing for sustainable and maintenance-free soil moisture monitoring in agricultural applications.
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CiteScore
5.70
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