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60 GHz Antenna Diagnostics from Planar Near Field Antenna Measurement Without External Frequency Conversion

机译:平面近场天线测量的60 GHz天线诊断,无外部频率转换

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摘要

We previously demonstrated that 60 GHz planarnear-field antenna measurements without external frequency conversion can provide far-field radiation patterns in good agreement with spherical near-field antenna measurements in spite of thecable flexing and thermal drift effects [P.I.Popa, S. Pivnenko,J.M. Nielsen, O. Breinbjerg, 60 GHz Antenna Measurement Setup using a VNA without External Frequency Conversion,36th Annual Symposium of the Antenna Measurement Technique Association ,October 12-17,Tucson, Arizona, 2014]. In this work we extend the validation of this 60 GHz planar near-field (PNF) set-up to antenna diagnostics and perform a detailed systematic study of the extreme near-field of a standard gain horn at 60GHz from planar and spherical near-field measurement data. The magnitude and phase of all three rectangular components of the electric and the magnetic aperture fields are calculated, as is the main component of the Poynting vector showing the power flow over the aperture. While the magnitude of the co-polar electricfield may seem the obvious object for antenna diagnostics, we demonstrate that there is much additional information in those additional quantities that combine to give the full picture of the aperture field. The usefulness of the complete informationis illustrated on example where the horn aperture is disturbed by a fault. We compare the results of the planar and sphericalnear-field (SNF) measurements to each other and to simulation results.
机译:先前我们已经证明,尽管有电缆弯曲和热漂移效应,但无需进行外部频率转换即可进行60 GHz平面近场天线测量,可以提供与球形近场天线测量非常吻合的远场辐射方向图[P.I. Popa,S.Pivnenko,J.M。 Nielsen,O. Breinbjerg,使用无外部频率转换的VNA的60 GHz天线测量设置,天线测量技术协会第36届年度研讨会,2014年10月12日至17日,亚利桑那州图森。在这项工作中,我们将这种60 GHz平面近场(PNF)设置的验证扩展到天线诊断,并对平面和球形近场在60 GHz时标准增益喇叭的极端近场进行了详细的系统研究。测量数据。计算电和磁孔径场的所有三个矩形分量的大小和相位,以及显示点功率流过孔径的Poynting矢量的主要分量。虽然同极电场的强度似乎是天线诊断的显而易见的目标,但我们证明,这些额外的数量中还包含许多额外的信息,这些信息组合在一起即可显示出孔径场的全貌。在喇叭孔被故障打扰的例子中说明了完整信息的有用性。我们将平面和球形近场(SNF)测量的结果相互比较,并与模拟结果进行比较。

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