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Design of a Soil Moisture Sensor with Temperature Compensation Using a Backpropagation Neural Network

机译:用背部化神经网络设计温度补偿土壤湿度传感器的设计

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This paper presents the design and construction of a soil moisture sensor (ITM-01) with temperature compensation using a backpropagation neural network. To validate the sensor measurements, a series of experiments were conducted near the city of Atecuaro, Michoacan, Mexico (19°35' N, 101°11'W), in two different test sites. The soil contents were 67% clay, 17% lime and 16% sand. Measurements of the soil water content were obtained using a TDR soil moisture sensor, (6050X1 Trase System), and the sensor described in this work. The neural network was trained using data obtained from the gravimetric method. The parameter chosen to evaluate the performance of the sensor was the Sum of Squared Error (SSE) of the measurements compared to the gravimetric method. The results showed that the sensor ITM-01, yields volumetric water content measurements in agreement with gravimetric and TDR measurements. In particular for the data reported in this work, the ITM-01 sensor delivered measurements closer to gravimetric data compared to data obtained using the TDR sensor. Corn Crop: SSE TDR=926, SSE ITM-01=372. Flat terrain: SSE TDR=410, SSE ITM-01=78.
机译:本文介绍了使用反向桥张神经网络的温度补偿的土壤湿度传感器(ITM-01)的设计和构造。为了验证传感器测量,在两个不同的测试部位,在Atecuaro,Michoacan市(Michoacan市)附近进行了一系列实验,在墨西哥迈克罗(19°35',101°11'W)附近。土壤含量为67%粘土,17%石灰和16%的沙子。使用TDR土壤湿度传感器(6050x1序列系统)和该工作中描述的传感器获得土壤含水量的测量。使用从重量法获得的数据训练神经网络。选择评估传感器性能的参数是与重量法相比测量的平方误差(SSE)的总和。结果表明,传感器ITM-01,与重量和TDR测量一致地产生体积水含量测量。特别是对于在本作工作中报告的数据,与使用TDR传感器获得的数据相比,ITM-01传感器传送了更接近重量数据的测量。玉米作物:SSE TDR = 926,SSE ITM-01 = 372。平地形:上面的TDR = 410,SSE ITM-01 = 78。

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