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Two efficient procedures to correct the positioning errors in the plane-polar scanning

机译:纠正平面极性扫描中定位误差的两种有效方法

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摘要

Two techniques to effectively compensate known positioning errors in a plane-polar near-field-far-field (NF-FF) transformation, using a minimum number of NF data and adopting an oblate ellipsoid to shape the considered antenna, are proposed and validated through experimental proofs. The former makes use of the singular value decomposition method to recover the voltage samples which would be acquired by the probe at the points fixed by the non-redundant sampling representation from the collected positioning error affected ones, whereas the latter employs an iterative scheme. The NF data required by the classical NF-FF transformation with plane-rectangular scanning are then efficiently evaluated via a two-dimensional optimal sampling interpolation formula. The effectiveness of the proposed techniques is assessed by experimental tests performed at the Antenna Characterisation Lab of the University of Salerno.
机译:提出并验证了两种技术,可使用最少数量的NF数据并采用扁椭圆形来塑造所考虑的天线,从而有效补偿平面极性近场-远场(NF-FF)变换中的已知定位误差。实验证明。前者利用奇异值分解方法从收集的定位误差影响的样本中恢复由探针在由非冗余样本表示固定的点上获取的电压样本,而后者则采用迭代方案。然后,通过二维最佳采样插值公式,可以有效地评估采用平面矩形扫描的经典NF-FF变换所需的NF数据。拟议技术的有效性通过萨勒诺大学天线表征实验室进行的实验测试进行了评估。

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