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Precise dielectric property measurements and E-field probe calibration for specific absorption rate measurements using a rectangular waveguide

机译:使用矩形波导进行特定介电常数测量的精确介电性能测量和电场探头校准

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Specific absorption rate (SAR) measurements require accurate calculations of the dielectric properties of tissue-equivalent liquids and associated calibration of E-field probes. We developed a precise tissue-equivalent dielectric measurement and E-field probe calibration system. The system consists of a rectangular waveguide, electric field probe, and data control and acquisition system. Dielectric properties are calculated using the field attenuation factor inside the tissue-equivalent liquid and power reflectance inside the waveguide at the air/dielectric-slab interface. Calibration factors were calculated using isotropicity measurements of the E-field probe. The frequencies used are 900 MHz and 1800 MHz. The uncertainties of the measured values are within +-3percent, at the 95percent confidence level. Using the same waveguide for dielectric measurements as well as calibrating E-field probes used in SAR assessments eliminates a source of uncertainty. Moreover, we clearly identified the system parameters that affect the overall uncertainty of the measurement system.
机译:特定吸收率(SAR)测量需要精确计算组织等效液体的介电特性,并进行电场探头的相关校准。我们开发了一种精确的组织等效电介质测量和电场探针校准系统。该系统由矩形波导,电场探头以及数据控制和采集系统组成。使用组织等效液体内部的场衰减因子和空气/电介质-平板界面处波导内部的功率反射率来计算电介质特性。使用电场探头的各向同性测量值计算校准因子。使用的频率为900 MHz和1800 MHz。在95%的置信水平下,测量值的不确定度在+ -3%之内。使用相同的波导进行电介质测量以及校准用于SAR评估的电场探头,可以消除不确定性。此外,我们清楚地确定了影响测量系统总体不确定性的系统参数。

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