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A Study of the Low-Frequency Coaxial Reflectometer Measurement Procedure for Evaluation of RF Absorbers' Reflectivity-II

机译:低频同轴反射仪测量程序用于评估射频吸收器反射率的研究-II

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The Low frequency Coaxial Reflectometer is the recommended procedure to measure the absorbers' reflectivity as per the IEEE 1128-1998 standard. The standard recommends the operable frequency range up to 500 MHz with a permissible error of 2 dB and higher error beyond 600 MHz. This paper studies and discusses the error on different types of absorber. Each of the absorber type is simulated in the square section of the reflectometer setup to compute the absorber's reflectivity using Ansys HFSS. An effective time gating technique is applied to reduce the effect of edge effects. These results are compared to the unit cell simulation results with a plane wave excitation and periodic boundary conditions. The absorbers are then simulated in the complete reflectometer setup to include the mismatch associated with the transition and compared to the unit cell model results. The errors associated with the comparison of the absorbers' simulation results for these different models are analyzed. The combination of these different absorbers is simulated in unit cell model. The absorbers are placed in different regions and orientations inside the reflectometer. The comparison between the unit cell results of the combination of the absorbers and the results of the absorbers inside the reflectometer in different orientations give the effect of the non-uniform field distribution inside the reflectometer.
机译:根据IEEE 1128-1998标准,建议使用低频同轴反射仪测量吸收体的反射率。该标准建议可操作的频率范围最高为500 MHz,允许的误差为2 dB,超过600 MHz时的误差更高。本文研究并讨论了不同类型吸收器的误差。每种吸收剂类型均在反射计设置的正方形部分进行仿真,以使用Ansys HFSS计算吸收剂的反射率。应用有效的时间门控技术来减少边缘效应的影响。将这些结果与具有平面波激励和周期性边界条件的晶胞模拟结果进行比较。然后,在完整的反射计设置中对吸收器进行仿真,以包括与跃迁相关的失配,并将其与晶胞模型结果进行比较。分析了与这些不同模型的吸收器仿真结果的比较相关的误差。这些不同的吸收体的组合在晶胞模型中进行了模拟。吸收器放置在反射计内的不同区域和方向。吸收体组合的单位晶胞结果与反射仪内部不同方向的吸收体结果之间的比较给出了反射仪内部场分布不均匀的影响。

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