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Determination of the far field radiation pattern of an antenna from a set of sparse near field measurements.

机译:根据一组稀疏的近场测量结果确定天线的远场辐射方向图。

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This work introduces a new technique in electromagnetic antenna near field to far field transformations (NF/FF). The new NF/FF transformation is based on the solution of an inverse problem in which the measured NF and predicted FF values are attributed to a set of equivalent electric and magnetic surface currents which lie on a convex Huygen's surface that is conformal to the antenna under test (AUT). The NF points are conformal to the AUT, reducing the number of samples and relaxing positioning requirements used in conventional spherical, cylindrical and planar NF/FF geometries.; A pseudo inversion of the matrix representing the mapping of the equivalent sources into the near field samples is obtained by using the singular value decomposition (SVD). The SVD is used to form an approximation of the inverse of the matrix. This inverse, when multiplied by the NF measurement vector, solves for the surface currents. The FF is computed from the currents in a straightforward manner. The work develops the theoretical foundation for the new approach and investigates the FF reconstruction accuracy of the new technique for various test cases. Anticipated refinements in the technique including probe pattern compensation and unique applications using sparse/irregulary sampled NF data sets are also described.
机译:这项工作介绍了一种电磁天线近场到远场转换(NF / FF)的新技术。新的NF / FF变换基于一个反问题的解决方案,在该问题中,测得的NF和预测的FF值归因于一组等效的电磁表面电流,这些电流位于凸形的惠更斯表面上,该表面与在测试(AUT)。 NF点与AUT是共形的,减少了样本数量,并放宽了常规球形,圆柱形和平面NF / FF几何中使用的定位要求。通过使用奇异值分解(SVD)获得表示等效源到近场样本映射的矩​​阵的伪反演。 SVD用于形成矩阵逆的近似值。当与NF测量向量相乘时,该反函数求解表面电流。 FF是通过电流直接计算得出的。这项工作为该新方法奠定了理论基础,并研究了该新技术在各种测试案例中的FF重构精度。还介绍了该技术的预期改进,包括探针模式补偿和使用稀疏/不规则采样的NF数据集的独特应用。

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