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Explicit Permittivity Determination of Medium-Loss Materials From Calibration-Independent Measurements

机译:通过与校准无关的测量来明确确定中损耗材料的介电常数

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摘要

Calibration-dependent methods, before starting to measurements, require some sort of expensive calibration kits, which could reduce the accuracy of measurements due to the application of imperfect calibration standards. To eliminate such problems and reduce the overall cost of the measurement setup, in this research paper, a novel calibration-independent method has been proposed. Compared with other calibration-independent methods, our method not only extracts the complex permittivity ( ) uniquely but also removes the need for any numerical method, which generally requires a good initial guess around a global minimum to obtain accurate results. Non-iterative and unique is determined by our method using raw (uncalirated) scattering (S-) parameter measurements of four different combinations of two non-reflecting measurement cells (the same length or different lengths) asymmetrically loaded by two identical samples with lengths and (samples are flushed to the terminals of the measurement cells). -band waveguide measurements of the polyethylene sample ( mm and mm) were conducted to validate our proposed method and compare its accuracy with other tested methods. An uncertainty analysis was performed to analyze the effect of any inaccurate sample thickness and offset in the position of the shifted sample, which- is required by other calibration-independent method, on measured permittivity.
机译:在开始测量之前,依赖于校准的方法需要某种昂贵的校准套件,由于使用了不完善的校准标准品,可能会降低测量的准确性。为了消除此类问题并降低测量设置的总成本,在本研究论文中,提出了一种新颖的与校准无关的方法。与其他独立于校准的方法相比,我们的方法不仅可以唯一地提取复数介电常数(),而且不需要任何数值方法,而数值方法通常需要围绕全局最小值进行良好的初步猜测才能获得准确的结果。非迭代和唯一性是通过我们的方法使用两个(长度相同或长度不同)两个非反射测量单元的四个不同组合的原始(未校准)散射(S-)参数测量值确定的,两个非相同测量单元的长度和(将样品冲洗至测量池的端子)。对聚乙烯样品(毫米和毫米)进行了宽带波导测量,以验证我们提出的方法并将其准确性与其他测试方法进行比较。进行了不确定性分析,以分析任何不准确的样品厚度和偏移的样品位置中的偏移(这是其他独立于校准的方法所要求的)对测得的介电常数的影响。

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