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Modeling, simulation and testing of a silicon soil moisture sensor based on the dual-probe heat-pulse method

机译:基于双探针热脉冲法的硅土水分传感器的建模,仿真和测试

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摘要

A silicon soil moisture sensor, based in the dual-probe heat-pulse (DPHP) method, was modeled, simulated and tested for achieving,with low-cost, accurate and reliable measurements. This method is based on the application of a heat pulse during a fixed interval of time. The maximum rise in temperature (ΔTM) is monitored by the measurement probe, placed at a certain distance of the heater source. Alow-cost high-performance and small temperature sensor (a dynamic VPTAT generator) was designed and fabricated to be placed into the probe which have 0.912 mm inner diameter and 20 mm long. If one considers the range of water contents, ratio of water mass to dry soil mass, in a typical agricultural soil (0.05–0.35m3 m−3), the average sensitivity of the dual probe is about 1.95º C per unit change (m3 m−3) in water content for q = 400 Jm−1.
机译:对基于双探针热脉冲(DPHP)方法的硅土壤湿度传感器进行了建模,仿真和测试,以实现低成本,准确而可靠的测量。该方法基于在固定的时间间隔内施加热脉冲。最大温度升高(ΔTM)由位于加热源一定距离处的测量探针监控。设计并制造了低成本,高性能,小型温度传感器(动态VPTAT发生器),以将其放置到内径为0.912毫米,长为20毫米的探头中。如果考虑典型农业土壤(0.05–0.35m3 m-3)中的水含量范围(水量与干土质量之比),则双探头的平均灵敏度约为每单位变化(m3)1.95ºC q = 400 Jm-1的含水量中的m-3)。

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