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Near Field Measurements with Radically Reduced Sampling Requirement through Numerically Defined Expansion Functions

机译:通过数值定义的扩展功能近乎磁场测量,通过无根本降低采样要求

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We present an antenna measurement methodology requiring a radically reduced number of field samples than the standard Nyquist-based theory maintaining a comparable accuracy. Numerical simulations and partial knowledge of the geometry of the Antenna Under Test are combined to build a set of numerically defined expansion functions. The method uses basic knowledge of the antenna and the assumption that scattering from large surfaces can be predicted accurately by numerical tools. Areas of the antenna such as feeding structures are treated as unknown and represented by equivalent electric and magnetic currents on a conformal surface. In this way, the complexity, and thus the number of unknowns, is dramatically reduced with respect to the full problem for most antennas. The method can be employed in standard sampling ranges. The methodology is validated with in spherical and in planar near field geometries considering a reflector antenna (the MVG SR40 fed by dual ridges horns) in single- and multi-feed configurations, respectively at 18 and 30 GHz. Patterns obtained with downsampled fast approach are compared to standard measurements. Down-sampling factors up to 8 are achieved maintaining very high correlation levels with standard techniques.
机译:我们介绍了一种天线测量方法,需要从基于标准的奈奎斯特的理论维持可比准确度的基于标准奈奎斯特的理论。在测试下的天线几何形状的数值模拟和部分知识被组合为构建一组数值定义的扩展功能。该方法使用天线的基本知识,并且可以通过数值工具准确地预测从大表面散射的假设。诸如馈电结构的天线的区域被视为未知的并且通过相成形表面上的等效电流和磁电流表示。以这种方式,复杂性,因此未知数的数量在大多数天线上的完全问题方面大大减少。该方法可以在标准采样范围内使用。考虑到在18和30GHz的单馈配置中,以28和30GHz分别在单个和多进料配置中的反射器天线(MVG SR40馈送的MVG SR40)的近场几何形状的球形和平面验证。将使用下采样的快速方法获得的图案与标准测量进行比较。高达8的羽绒采样因子实现了以标准技术保持非常高的相关水平。

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