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Noniterative complex permittivity retrieval using calibration-independent waveguide measurements

机译:使用校准无关的波导测量的非特性复杂介电常数检索

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摘要

Calibration-independent nonresonant measurements can be employed to eliminate the need for calibration before microwave measurements. These methods generally assume that the location of the sample in its measurement cell is known after the sample is positioned or shifted within the cell and that the length of the measurement cell is known. In addition, in general these methods necessitate some sort of numerical analysis to retrieve the complex permittivity of the sample. In this research paper, we propose a calibration-independent nonresonant waveguide method to first eliminate measurement errors arising from inaccurate knowledge of the location of the sample within its cell (after shifting) and arising from improper knowledge of the length of the measurement cell and second to determine the complex permittivity explicitly. In addition, our proposed method needs scattering parameter measurements from three different measurement configurations another improvement with respect to a similar calibration independent method requiring measurements from four different configurations. Furthermore, it does not necessitate that the sample be flushed to the measurement cell. We analyzed repeatability of cell connection and investigated uncertainty in the measurement of complex permittivity for a change in length of the sample and the cell and when air gap present between sample surfaces and guide walls. We validated the proposed method by measuring the complex permittivity of polyethylene sample and distilled water at X-band (8.2-12.4GHz). (C) 2017 Elsevier B.V. All rights reserved.
机译:可以采用校准无关的非共度测量来消除微波测量之前对校准的需求。这些方法通常假设在样品定位或移位在细胞内之后,样品在其测量单元中的位置是已知的,并且已知测量单元的长度。另外,通常这些方法需要某种数值分析来检索样品的复杂介电常数。在本研究论文中,我们提出了一种独立于校准的非族化波导方法,首先消除了在其细胞内(移位后)内样品的位置的不准确知识产生的测量误差,并由对测量细胞长度的不当知识而产生的不当明确确定复杂介质。此外,我们所提出的方法需要从三种不同的测量配置中的散射参数测量相对于需要从四种不同配置测量的类似校准独立方法的另一个改进。此外,它不需要将样品刷新到测量单元。我们分析了细胞连接的可重复性,并在测量复杂介电常数的测量中进行了不确定性,用于样品的长度和细胞的变化以及当样品表面和引导壁之间存在的气隙时。我们通过测量X波段(8.2-12.4GHz)的聚乙烯样品和蒸馏水的复杂介电常数来验证所提出的方法。 (c)2017年Elsevier B.V.保留所有权利。

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