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Di-Sense: In situ real-time permittivity estimation and soil moisture sensing using wireless underground communications

机译:Di-Sense:使用无线地下通信进行原位实时介电常数估算和土壤湿度感测

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摘要

Internet of Underground Things (IOUT) communications have the potential for soil properties estimation and soil moisture monitoring. In this paper, a method has been developed for real-time in situ estimation of relative permittivity of soil, and soil moisture, that is determined from the propagation path loss, and velocity of wave propagation of an underground (UG) transmitter and receiver link in wireless underground communications (WUC). The permittivity and soil moisture estimation processes (Di-Sense, where Di- prefix means two) are modeled and validated through an outdoor UG software-defined radio (SDR) testbed, and indoor greenhouse testbed. SDR experiments are conducted in the frequency range of 100-500 MHz, using antennas buried at 10 cm, 20 cm, 30 cm, and 40 cm depths in different soils under different soil moisture levels, by using dipole antennas with over the air (OTA) resonant frequency of 433 MHz. Experiments are conducted in silt loam, silty clay loam, and sandy soils. By using Di-Sense approach, soil moisture and permittivity can be measured with high accuracy in 1-15 m distance range in plant root zone up to depth of 40 cm. The estimated soil parameters have less than 8% estimation error from the ground truth measurements and semi-empirical dielectric mixing models. (C) 2019 Elsevier B.V. All rights reserved.
机译:地下物联网(IOUT)通信具有评估土壤性质和监测土壤湿度的潜力。本文开发了一种方法,用于实时原位估算土壤和土壤水分的相对介电常数,该方法由地下(UG)发射器和接收器链路的传播路径损耗和波传播速度确定在无线地下通信(WUC)中。通过室外UG软件定义的无线电(SDR)测试台和室内温室测试台对介电常数和土壤湿度估算过程(Di-Sense,其中Di-前缀表示两个)进行建模和验证。 SDR实验是在100-500 MHz的频率范围内进行的,使用的天线被埋在10 cm,20 cm,30 cm和40 cm深度的不同土壤湿度下的不同土壤中,通过使用空中偶极天线(OTA) )433 MHz的谐振频率。实验是在粉壤土,粉质粘土土和沙质土壤中进行的。通过使用Di-Sense方法,可以在植物根部区域直至40 cm的深度中的1-15 m距离范围内高精度测量土壤湿度和介电常数。根据地面实况测量和半经验电介质混合模型,估计的土壤参数的估计误差小于8%。 (C)2019 Elsevier B.V.保留所有权利。

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