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Microstrip Ring Resonator for Soil Moisture Measurements

机译:微带环形谐振器,用于土壤湿度测量

摘要

Accurate determination of spatial soil moisture distribution and monitoring its temporal variation have a significant impact on the outcomes of hydrologic, ecologic, and climatic models. Development of a successful remote sensing instrument for soil moisture relies on the accurate knowledge of the soil dielectric constant (epsilon(sub soil)) to its moisture content. Two existing methods for measurement of dielectric constant of soil at low and high frequencies are, respectively, the time domain reflectometry and the reflection coefficient measurement using an open-ended coaxial probe. The major shortcoming of these methods is the lack of accurate determination of the imaginary part of epsilon(sub soil). In this paper a microstrip ring resonator is proposed for the accurate measurement of soil dielectric constant. In this technique the microstrip ring resonator is placed in contact with soil medium and the real and imaginary parts of epsilon(sub soil) are determined from the changes in the resonant frequency and the quality factor of the resonator respectively. The solution of the electromagnetic problem is obtained using a hybrid approach based on the method of moments solution of the quasi-static formulation in conjunction with experimental data obtained from reference dielectric samples. Also a simple inversion algorithm for epsilon(sub soil) = epsilon'(sub r) + j(epsilon"(sub r)) based on regression analysis is obtained. It is shown that the wide dynamic range of the measured quantities provides excellent accuracy in the dielectric constant measurement. A prototype microstrip ring resonator at L-band is designed and measurements of soil with different moisture contents are presented and compared with other approaches.
机译:准确确定空间土壤水分分布并监测其时间变化对水文,生态和气候模型的结果有重大影响。成功的土壤水分遥感仪器的开发依赖于土壤介电常数(ε(土壤))及其水分含量的准确知识。现有两种测量土壤低频和高频介电常数的方法分别是时域反射法和使用开放式同轴探针的反射系数测量。这些方法的主要缺点是缺乏对ε(假土)虚部的准确测定。本文提出了一种微带环谐振器,用于精确测量土壤介电常数。在该技术中,微带环形谐振器被放置为与土壤介质接触,并且ε的实部和虚部分别由谐振器的谐振频率和品质因数的变化确定。电磁问题的解决方案是使用混合方法获得的,该方法基于准静态公式的矩量解方法,并结合从参考电介质样本获得的实验数据。通过回归分析,得到了一种简单的反演ε(土壤)=ε(sub r)+ j(epsilon(sub r))的算法,结果表明,较宽的动态范围内的被测量具有很好的精度。在介电常数测量中,设计了一个在L波段的微带环形谐振器原型,提出了不同含水量土壤的测量方法,并与其他方法进行了比较。

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    Li Eric S.; Sarabandi Kamal;

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  • 年度 1993
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