On the Practical Effectiveness of the Nonredundant Spherical NF-FF Transformation for Offset Mounted Long AUTs

F. D’Agostino, F. Ferrara, C. Gennarelli, R. Guerriero, M. Migliozzi
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Abstract

A laboratory assessment of a recently proposed spherical near-field to far-field (NF-FF) transformation technique for a long antenna under test (AUT) mounted in offset configuration, which requires an amount of NF measurements minimum and equal to that needed for the onset mounting, is provided in this work. The interest for this technique is due to the fact that sometimes, for practical limitations, it can be impossible an onset mounting, where the AUT center and the scanning sphere one coincide. In this case, the amount of NF measurements and the corresponding acquisition time required by the traditional spherical NF-FF transformation can remarkably raise, owing to the minimum sphere rule. Instead, in the proposed NF-FF transformation, the massive data necessary for the traditional one are efficiently recovered from the measured nonredundant samples using an optimal sampling interpolation formula, got by suitably exploiting the nonredundant sampling representations and modeling the AUT by a prolate spheroid. Some laboratory results, fully confirming the efficacy of such a nonredundant NF-FF transformation from the practical viewpoint, are reported.
非冗余球面NF-FF变换在偏移安装长aut中的实际有效性
本文对最近提出的球面近场到远场(NF- ff)转换技术进行了实验室评估,该技术适用于安装在偏移配置中的长天线(AUT),该技术需要最小且等于初始安装所需的NF测量量。对这项技术的兴趣是由于这样一个事实,有时,由于实际限制,它可能不可能开始安装,其中AUT中心和扫描球体重合。在这种情况下,传统的球面NF- ff变换由于采用最小球面规则,所需要的NF测量量和相应的采集时间可以显著提高。相反,在本文提出的NF-FF变换中,通过适当地利用非冗余采样表示和用长形椭球面建模得到的最优采样插值公式,有效地从测量的非冗余样本中恢复传统变换所需的大量数据。一些实验结果,充分证实了这种非冗余NF-FF转换的有效性,从实际的观点,报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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