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Simultaneous Measurement of Antenna Gain and Complex Permittivity of Liquid in Near-Field Region Using Weighted Regression

机译:利用加权回归同时测量近场区域液体的天线增益和复介电常数

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摘要

As a technique for calibrating electric-field probes used in standardized SAR (Specific Absorption Rate) assessment, we have studied the technique using the Friis transmission formula in the tissue-equivalent liquid. It is difficult to measure power transmission between two reference antennas in the far-field region due to large attenuation in the liquid. This means that the conventional Friis transmission formula cannot be applied to our measurement so that we developed an extension of this formula that is valid in the near-field region. In this paper, the method of weighted least squares is introduced to reduce the effect of the noise in the measurement system when the gain of the antenna operated in the liquid is determined by the curve-fitting technique. And we examine how to choose the fitting range to reduce the uncertainty of the estimated gain.
机译:作为校准用于标准SAR(比吸收率)评估中的电场探头的技术,我们已经研究了在组织当量液体中使用Friis传输公式的技术。由于液体中的大量衰减,很难测量远场区域中两个参考天线之间的功率传输。这意味着常规的Friis传输公式无法应用于我们的测量,因此我们开发了此公式的扩展,该公式在近场区域有效。在本文中,引入了最小二乘加权法,以减小当通过曲线拟合技术确定在液体中工作的天线的增益时测量系统中的噪声影响。并且我们研究了如何选择拟合范围以减小估计增益的不确定性。

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