球面近场天线测量中非理想探头方向的校正

R. Cornelius, D. Heberling
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引用次数: 8

摘要

球面近场扫描是测量被测天线辐射特性的一种标准方法。由于测量数据需要从近场到远场的转换,因此在测量过程中,精确的探头位置和方向至关重要。例如,如果使用机械臂系统来定位探针,这可能很难实现。对于非理想测量位置的校正,过去已经提出了不同的方法。相比之下,球形近场测量系统中相关的非理想探头取向尚未得到全面分析,因为假设探头接收模式通常很宽(例如开放式波导),因此误差很小。本文证明了球面近场到远场变换中可以包含非理想探针取向。这是通过在探头响应计算中额外旋转探头接收系数来实现的。引入的点向高阶探头校正方案允许辐射AUT场的精确球面波扩展。利用该方法,通过仿真和测量研究了非理想测头取向引起的误差。给出的结果可以用来估计由于非理想探针方向引起的误差。在实际测量中,即使使用指示高阶探头,与其他误差源相比,误差通常也很小。然而,包括探针的方向通常提高测量结果的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Correction of non-ideal probe orientations for spherical near-field antenna measurements
Spherical near-field scanning is a standard method to measure the radiation characteristic of an antenna under test (AUT). Due to the required near-field to far-field transformation of the measured data, an accurate position and orientation of the probe during the measurement is crucial. This might be difficult to achieve if, for example, a robotic arm system is used to position the probe. Different methods for correction of non-ideal measurement positions have been presented in the past. In contrast, the related non-ideal probe orientations in a spherical near-field measurement system have not been comprehensively analyzed due to the assumption that the error is small since the probe receiving pattern is typically broad (e.g. an open-ended waveguide). In this paper, it is shown that non-ideal probe orientations can be included in the spherical near-field to far-field transformation. This is achieved by additional rotations of the probe receiving coefficients in the probe response calculation. The introduced pointwise higher-order probe correction scheme allows an exact spherical wave expansion of the radiated AUT field. The proposed method is used to investigate the error due to non-ideal probe orientations by simulation and measurement. The presented results can be used to estimate the error due to non-ideal probe orientations. It is verified that the error is typically small compared to other error sources in a practical measurement even if a directive higher-order probe is used. Nevertheless, including the probe orientation generally improves the accuracy of the measurement result.
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