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Estimation of Complex and Linear Uncertainities in S-Parameter Measurements for Metrology Applications

机译:计量应用中S参数测量的复杂度和线性不确定度的估计

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The present paper aims to develop a uniform procedure of estimating uncertainty components in VNA measurements whether in complex or linear units. The individual response of each uncertainty components have been studied in the frequency range 1 to 18 GHz, which are applicable for one-port and two-port measurements. The Vector network analyser (VNA) measurements are performed to assign an overall uncertainty for the respective measuring parameter in terms of complex and linear units for coaxial step attenuator, fixed attenuator and mismatch. These measurements are then verified through the primary and transfer standards of the attenuation and impedance parameters and thus the traceability of the VNA measurements is established. Finally, the outcome of complete study has been presented as VNA measurements based new calibration and measurement capabilities (CMCs) for NPL, India. It has shown that the final combined uncertainty is found same or nearby by obtaining from uncertainty components either in complex or in linear units. Thus, this paper reports the estimation of VNA measurement uncertainties for various parameters as per the requirements of ISO/IEC 17025:2005 standard.
机译:本文旨在开发一种统一的程序来估计VNA测量中不确定分量的复杂度或线性单位。在1至18 GHz的频率范围内研究了每种不确定性分量的各自响应,适用于单端口和两端口测量。进行矢量网络分析仪(VNA)测量,以便根据同轴步进衰减器,固定衰减器和失配的复数和线性单位,为各个测量参数分配总体不确定性。然后,通过衰减和阻抗参数的主要标准和传输标准验证这些测量,从而建立VNA测量的可追溯性。最后,完整的研究结果已作为基于NNA的印度NPL的新校准和测量功能(CMC)的VNA测量进行了介绍。结果表明,通过从不确定分量中以复数或线性单位获得最终组合不确定性,可以找到相同或近似的最终不确定性。因此,本文根据ISO / IEC 17025:2005标准的要求,报告了各种参数的VNA测量不确定度的估计。

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