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Improved Antenna Efficiency Measurement Uncertainty in a Reverberation Chamber at Millimeter-Wave Frequencies

机译:毫米波频率混响室中改进的天线效率测量不确定度

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We provide results of antenna radiation and total radiation efficiency at millimeter-wave frequencies gathered with a new open-ended waveguide-plate method that is compared to a well-known two-antenna method. The new method yields improved uncertainty in antenna efficiency measurements. Both methods are based on use of a reverberation chamber. Measurement results are compared to numerical simulations and good agreement (~3% maximum difference) is achieved. Before performing the efficiency measurements, the chamber configuration was assessed with respect to the Rician -factor, number of uncorrelated paddle orientations, and coherence bandwidth. We calculated the uncertainty using the NIST microwave uncertainty framework capable of performing parallel sensitivity and Monte Carlo analyses. The framework enables us to capture and propagate the uncertainties in the S-parameter measurements to the final efficiency result. The expanded uncertainty that we achieved for these antenna efficiency measurements is 2.60%.
机译:我们提供了一种新的开放式波导板方法收集的毫米波频率下的天线辐射和总辐射效率的结果,该方法与众所周知的两天线方法进行了比较。新方法提高了天线效率测量的不确定性。两种方法均基于混响室的使用。将测量结果与数值模拟进行比较,可以达到良好的一致性(最大差异约为3%)。在执行效率测量之前,应根据Rician因子,不相关桨叶方向的数量和相干带宽来评估腔室配置。我们使用能够执行平行灵敏度和Monte Carlo分析的NIST微波不确定度框架计算了不确定度。该框架使我们能够捕获S参数测量中的不确定性并将其传播到最终效率结果。我们为这些天线效率测量获得的扩展不确定度为2.60%。

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