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Determination of soil moisture based on an improved sensor design using time domain transmission measurements

机译:基于改进的传感器设计使用时域传输测量来确定土壤水分

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Delay time measurements, e.g. time domain reflec-tometry (TDR), are a well-established method for the measurement of permittivity in various materials, especially soils [1]. However, common measurement systems only provide an average value of the dielectric constant along the length of the TDR sensor. Furthermore the accuracy offered by common TDR measurements is limited due to multiple reflections caused by the material under test. This contribution deals with a new sensor design for the characterization of soil moisture using time domain transmission (TDT) measurements. The basis of the advanced TDT technique is a new waveguide concept, which offers the possibility to perform transmission measurements in soils. Thus multiple reflections along the waveguide do not influence the measurement accuracy. By using a so-called ”concentric reversion coupler” TDT measurements can be performed without a measuring port at the end of the sensor.
机译:延迟时间测量,例如时域反射 - Tometry(TDR)是一种良好的用于测量各种材料中介电常数的方法,尤其是土壤[1]。然而,公共测量系统仅提供沿TDR传感器的长度的介电常数的平均值。此外,由于经过测试的材料引起的多个反射,公共TDR测量所提供的精度受到限制。该贡献涉及使用时域传输(TDT)测量的土壤水分表征的新传感器设计。先进的TDT技术的基础是一种新的波导概念,它提供了在土壤中进行传输测量的可能性。因此,沿波导的多个反射不会影响测量精度。通过使用所谓的“同心回转耦合器”TDT测量可以在传感器末端的测量端口进行TDT测量。

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