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Fast and accurate extraction of complex permittivity from surface imaging with SPDR scanner and hand-held VNAs

机译:使用SPDR扫描仪和手持式VNA从表面成像快速而准确地提取复介电常数

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The work proposes and validates a methodology for efficient imaging of material samples with a recently developed portable 2D scanner incorporating a 10 GHz split-post dielectric resonator and driven by a low-form-factor vector or scalar network analyser. First, experimental studies are conducted to evaluate the influence of the network analyser operating parameters on the accuracy and stability of complex permittivity extraction. The settings of 1 kHz intermediate frequency bandwidth and 200 frequency points within the measured band are selected, as a cost-to-accuracy compromise. Then, a post-processing procedure based on Lorentzian curve fitting is applied to the raw response, to further enhance the measurement accuracy and stability. The methodology is applied to three materials, and a 2D scan of a laminate sample demonstrates the achieved efficiency.
机译:这项工作提出并验证了一种方法,该方法是利用最近开发的便携式2D扫描仪对材料样品进行有效成像的方法,该扫描仪具有10 GHz的分体式介电谐振器,并由低尺寸因子矢量或标量网络分析仪驱动。首先,进行实验研究以评估网络分析仪工作参数对复介电常数提取的准确性和稳定性的影响。选择了1 kHz中频带宽和测量频段内的200个频率点的设置,这是对精度成本的一种折衷。然后,将基于洛伦兹曲线拟合的后处理程序应用于原始响应,以进一步提高测量精度和稳定性。该方法论适用于三种材料,层压板样品的2D扫描证明了所达到的效率。

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