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Near Field Measurement Errors Due To Neglecting Probe Cross-Polarization

机译:由于忽略探针交叉极化而近场测量误差

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Calibration of planar near field probes is generally required to obtain accurate cross-polarization measurements of satellite antennas; however, probe calibration is costly and time consuming. One way to avoid probe calibration is to ignore the probe cross-polarization and use the probe co-polarized patterns alone for probe correction. Then the probe can be easily characterized by standard, in-house measurements or by analytical models. Of course, if the probe cross-polarization is ignored, additional errors are introduced in the co- and cross-polarized pattern measurements, but the errors can be manageable, depending on the probe and Antenna-Under-Test (AUT) polarization properties. Complete formulas and/or tables for near field measurement errors for three popular measurement configurations are presented, along with experimental verification of the error estimates for one case.
机译:平面校准近场探针通常需要获得卫星天线的精确交叉极化测量值;但是,探针校准昂贵且耗时。一种避免探测校准的一种方法是忽略探针交叉极化,并使用单独的探针共聚图案进行探测校正。然后可以通过标准,内部测量或通过分析模型容易地表征探针。当然,如果忽略探针交叉极化,则在共同和交叉极化图案测量中引入附加误差,但误差可以是可管理的,具体取决于探头和天线偏振(AUT)偏振性。呈现了三个流行测量配置的近场测量误差的完整公式和/或表,以及一个误差估计的实验验证。

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