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首页> 外文期刊>International journal of antennas and propagation >Far-Field Pattern Reconstruction from Near-Field Data Collected via a Nonconventional Plane-Rectangular Scanning: Experimental Testing
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Far-Field Pattern Reconstruction from Near-Field Data Collected via a Nonconventional Plane-Rectangular Scanning: Experimental Testing

机译:从通过非常规平面矩形扫描收集的近场数据重建远场模式:实验测试

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This paper deals with the experimental validation of an efficient near-field-far-field (NF-FF) transformation using the planar wide-mesh scanning (PWMS). Such a nonconventional plane-rectangular scanning technique is so named, since the sample grid is characterized by meshes wider and wider when going away from the center, and makes it possible to lower the number of needed measurements, as well as the time required for the data acquisition when dealing with quasi-planar antennas. It relies on the use of the nonredundant sampling representations of electromagnetic fields which employ an oblate ellipsoid or a surface formed by two circular “bowls” with the same aperture diameter but eventually different bending radii to shape a quasi-planar antenna. A two-dimensional optimal sampling interpolation formula allows the reconstruction of the NF data at any point on the measurement plane and, in particular, at those required by the classical NF-FF transformation with the conventional plane-rectangular scanning. The measurements, performed at the planar NF facility of the antenna characterization laboratories of Selex ES, have confirmed the effectiveness of this innovative scanning also from the experimental viewpoint.
机译:本文涉及使用平面宽网扫描(PWMS)进行的有效近场-远场(NF-FF)转换的实验验证。之所以这样称呼这种非常规的平面矩形扫描技术,是因为样品网格的特征是:网格远离中心时越来越宽,并且可以减少所需的测量次数以及所需的时间。处理准平面天线时的数据采集。它依赖于电磁场的非冗余采样表示,该场采用扁椭圆形或由两个具有相同孔径直径但最终具有不同弯曲半径的圆形“碗”形成的表面来形成准平面天线。二维最佳采样插值公式可在测量平面上的任何点,特别是在使用常规平面矩形扫描的经典NF-FF变换所要求的那些点上重建NF数据。在Selex ES天线表征实验室的平面NF设施上进行的测量也从实验的角度证实了这种创新扫描的有效性。

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