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Probe Positioning Error Sensitivity Analysis for Planar Near-field Antenna Measurements

机译:平面近场天线测量的探头定位误差灵敏度分析

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Unmanned aerial vehicle based field measurements have been proposed as a possible solution to provide calibration data for large ground based radio telescope arrays, such as the Mid Frequency Aperture Array planned for the Square Kilometre Array project. This paper considers planar near-field scanning using a quad-copter equipped with a differential GPS (DGPS). The effect of random positional errors associated with DGPS on two different near- to far-field (FF) transformations, namely the planar plane wave expansion (PPWE) and the Fast Irregular Antenna Field Transformation Algorithm (FIAFTA), are investigated in the frequency range 450 MHz-1450 MHz. It is shown that FIAFTA drastically outperforms the PPWE for the given situation and produces adequate results over the band for a positional error of 1 cm. However, considering positional inaccuracies of 5 cm, both algorithms produce a predicted FF pattern which is corrupted beyond being of any practical use.
机译:已经提出了基于无人机的现场测量作为可能的解决方案,以为基于地面的大型射电望远镜阵列(例如计划用于平方公里阵列项目的中频孔径阵列)提供校准数据。本文考虑了使用配备差分GPS(DGPS)的四轴飞行器进行平面近场扫描。在频率范围内,研究了与DGPS相关的随机位置误差对两种不同的近场至远场(FF)转换(即平面波扩展(PPWE)​​和快速不规则天线场转换算法(FIAFTA))的影响450 MHz至1450 MHz。结果表明,对于给定的情况,FIAFTA的性能大大优于PPWE,并且在1 cm的位置误差下,在整个波段上均能产生足够的结果。但是,考虑到5 cm的位置误差,这两种算法都产生了预测的FF模式,该模式已损坏,超出了任何实际用途。

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