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Two Techniques for Compensating the Probe Positioning Errors in the Spherical NF–FF Transformation for Elongated Antennas

机译:用于补偿细长天线球形NF-FF变换中探头定位误差的两种技术

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摘要

Two effective approaches for compensating the positioning errors in a near-field-far-field (NF-FF) transformation technique with spherical scanning for long antennas using a nonredundant number of data are presented. The transformation technique relies on the nonredundant sampling representations of the electromagnetic fields and on the optimal sampling interpolation (OSI) expansions, and assumes the antenna under test as enclosed in a prolate ellipsoid, a source modelling particularly suitable to deal with elongated antennas. In order to evaluate the NF data at the points fixed by the nonredundant representation from the acquired irregularly spaced ones, the former approach employs the singular value decomposition method, whereas the latter makes use of an iterative technique. The former can be applied when the irregularly samples lie on nonuniform parallels, thus allowing to reduce the starting two-dimensional problem into two independent one-dimensional ones. The latter can be employed also when such a hypothesis does not hold, but requires the existence of a one-to-one correspondence associating at each uniform sampling point the nearest irregular one. In both the cases, the NF data needed by a probe compensated NF-FF transformation with spherical scanning are efficiently evaluated by using an OSI algorithm. Numerical tests assessing the effectiveness of the proposed approaches and their stability with respect to random errors affecting the NF data are shown.
机译:提出了两种有效的方法来补偿使用非冗余数据的长天线球形扫描近场-远场(NF-FF)变换技术中的定位误差。转换技术依赖于电磁场的非冗余采样表示形式以及最佳采样插值(OSI)扩展,并假定被测天线被包围在扁长的椭圆体中,该源模型特别适合于处理细长天线。为了从获取的不规则间隔的点中评估由非冗余表示固定的点上的NF数据,前一种方法采用奇异值分解方法,而后一种方法则采用迭代技术。当不规则样本位于不均匀的平行线上时,可以应用前者,从而可以将起始的二维问题减少为两个独立的一维问题。当这种假设不成立但需要存在一对一的对应关系时,在每个均匀采样点将最近的不规则对应关联起来,也可以采用后者。在这两种情况下,使用OSI算法均可有效地评估探针补偿的球面扫描NF-FF变换所需的NF数据。显示了评估所提出方法的有效性及其相对于影响NF数据的随机误差的稳定性的数值测试。

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