基于无相单平面近场扫描的贴片天线辐射方向图评估

Y. Shu, Xingchang Wei, Yanbin Yang
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引用次数: 6

摘要

传统的基于无相平面近场扫描的近场到远场变换通常需要在被测天线前两个平行平面上的场强数据。本文建立了基于无相单平面近场扫描的等效偶极子阵列辐射方向图评估模型。磁场大小由近场扫描仪获得。利用插值方法,在假定相邻两个采样点之间的场强变化不大的情况下,可以得到一组插值的场强。然后,在测量数据和插值数据之间采用迭代算法和奇异值分解(SVD)方法重建等效偶极子阵列。然后,通过等效源计算出辐射方向图。最后通过一个测量实例验证了该方法的有效性。该方法的主要优点是减少了一半的采样点,并且仍然可以建立有效的等效源。这种方法可以看作是效率和精度之间的一个很好的折衷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Patch Antenna Radiation Pattern Evaluation Based on Phaseless and Single-Plane Near-Field Scanning
Conventional near-field to far-field transformation based on phaseless planar near-field scanning usually requires field magnitude data over two parallel planes in front of the antenna under test (AUT). In this paper, an equivalent dipole array model is established for radiation pattern evaluation based on the phaseless and single-plane near-field scanning. The field magnitude is obtained by near-field scanner. Using an interpolation method, we can obtain a group of interpolated field magnitude under the assumption that field magnitude does not vary dramatically between two adjacent sampling points. Subsequently, an iterative algorithm together with singular value decomposition (SVD) method is performed between measured data and interpolated data for reconstructing the equivalent dipole array. Then, radiation pattern can be calculated by the equivalent sources. A measurement example is given to verify the effectiveness of the proposed method. Reducing a half of sampling points is the major advantage of this method, and it still can establish a valid equivalent source. This method can be regarded as a good compromise between efficiency and accuracy.
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