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Precise SAR measurements in the near-field of RF antenna systems.

机译:射频天线系统近场中的精确SAR测量。

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Wireless devices must meet specific safety radiation limits, and in order to assess the health affects of such devices, standard procedures are used in which standard phantoms, tissue-equivalent liquids, and miniature electric field probes are used. The accuracy of such measurements depend on the precision in measuring the dielectric properties of the tissue-equivalent liquids and the associated calibrations of the electric-field probes.; This thesis describes work on the theoretical modeling and experimental measurement of the complex permittivity of tissue-equivalent liquids, and associated calibration of miniature electric-field probes. The measurement method is based on measurements of the field attenuation factor and power reflection coefficient of a tissue-equivalent sample. A novel method, to the best of the authors knowledge, for determining the dielectric properties and probe calibration factors is described and validated.; The measurement system is validated using saline at different concentrations, and measurements of complex permittivity and calibration factors have been made on tissue-equivalent liquids at 900MHz and 1800MHz. Uncertainty analysis have been conducted to study the measurement system sensitivity. Using the same waveguide to measure tissue-equivalent permittivity and calibrate e-field probes eliminates a source of uncertainty associated with using two different measurement systems.; The measurement system is used to test GSM cell-phones at 900MHz and 1800MHz for Specific Absorption Rate (SAR) compliance using a Specific Anthropomorphic Mannequin phantom (SAM).
机译:无线设备必须满足特定的安全辐射限制,并且为了评估此类设备对健康的影响,使用了标准程序,其中使用了标准体模,等效于组织的液体和微型电场探头。这种测量的精度取决于测量组织等效液体的介电特性的精度以及电场探头的相关校准。本文介绍了组织等效液体的复介电常数的理论建模和实验测量以及微型电场探针的相关标定的工作。该测量方法基于组织等效样品的场衰减因子和功率反射系数的测量。据作者所知,描述并验证了一种确定介电特性和探头校准因子的新颖方法。使用不同浓度的盐水对测量系统进行了验证,并且已经在900MHz和1800MHz的组织等效液体上进行了复介电常数和校准因子的测量。已进行不确定度分析以研究测量系统的灵敏度。使用相同的波导来测量组织等效介电常数并校准电场探头,消除了使用两个不同的测量系统带来的不确定性。该测量系统用于测试使用特定拟人化人体模型(SAM)的900MHz和1800MHz GSM手机的特定吸收率(SAR)符合性。

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