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A novel iterative method to estimate the soil complex permittivity from measurement and simulation modeling

机译:一种新的迭代方法来估算测量和仿真建模的土壤复杂介电常数

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This paper introduces a new strategy to determine the soil permittivity and its loss tangent which uses simulation and measurement result for comparison. The setup of the measurement system includes a high frequency connector and a two-rod transmission line (TRTL) where one of the rods is embedded in an unknown-permittivity soil. In order to validate the simulation model by optimizing the complex permittivity of the soil from the measurement result a smart searching tool performed by the PSO (Particle Swarm Optimization) algorithm is applied. The measurements were carried out by a VNA (Vector Network Analyzer) to obtain the reflected signals from the TRTL for a non-parameterized soil. The effectiveness of the PSO algorithm is demonstrated by equalizing both simulated and measurement results of the soil complex permittivity in the simulation model.
机译:本文介绍了一种新的策略,用于确定土壤介电常数及其使用模拟和测量结果进行比较的损失切线。测量系统的设置包括高频连接器和双杆传输线(TRTL),其中一个杆嵌入未知介电常数的土壤中。为了通过优化从测量结果优化土壤的复杂介电常数来验证模拟模型,应用由PSO(粒子群优化)算法执行的智能搜索工具。测量由VNA(矢量网络分析仪)进行,以从TRTL获得来自TRTL的反射信号。通过均衡模拟和测量结果均衡模拟模型中的土壤复杂介电常数的模拟和测量结果来证明PSO算法的有效性。

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