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An iterative approach to compensate the probe positioning errors in a nonredundant spherical NF-FF transformation

机译:一种在非冗余球形NF-FF变换中补偿探针定位误差的迭代方法

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An efficient technique for compensating known probe positioning errors in a nonredundant spherical near-field - far-field (NF-FF) transformation, using an oblate ellipsoid to model a quasi-planar antenna, is experimentally assessed in this work. It employs an iterative approach to recover the nonredundant NF samples at the points fixed by the sampling representation from the collected irregularly spaced ones. The NF data required by the classical spherical NF-FF transformation are then efficiently determined from the nonredundant NF samples by means of an optimal sampling interpolation algorithm. Some experimental results, carried out at the UNISA Antenna Characterization Lab and assessing the effectiveness of the technique, are shown.
机译:在这项工作中,通过实验评估了一种有效的技术,该技术用于补偿非冗余球形近场-远场(NF-FF)转换中的已知探针定位误差,该方法使用扁椭圆形来模拟准平面天线。它采用迭代的方法从收集到的不规则间隔采样中恢复采样表示所固定的非冗余NF采样。然后,通过最佳采样插值算法从非冗余NF样本中有效地确定经典球形NF-FF变换所需的NF数据。显示了一些在UNISA天线特性实验室进行的实验结果,并评估了该技术的有效性。

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