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Echo Suppression by Spatial-Filtering Techniques in Advanced Planar and Spherical Near-Field Antenna Measurements [AMTA Corner]

机译:在高级平面和球形近场天线测量中通过空间滤波技术抑制回声[AMTA Corner]

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摘要

This paper presents a comparative investigation of two versatile error-mitigation techniques, applicable to general antenna near-field measurement scenarios with echo signals of unknown origin. Both techniques are based on spatial filtering of the measured field, taking advantage of a priori knowledge of the antenna's size. The first approach takes advantage of the spatial-filtering properties of the spherical-wave expansion of the measured field. The second approach is based on the reconstruction of equivalent currents, and implements the spatial filtering as a direct consequence of the selected size and shape of the reconstruction surface. The investigation was performed using measured data on two different horns in both planar and spherical near-field scanning geometries. The presence and levels of echo pollution in the measurements were controlled by introducing known scattering objects in the anechoic chambers, and comparing with reference situations without disturbance.
机译:本文对两种通用的误差缓解技术进行了比较研究,这些技术可用于具有未知来源回波信号的一般天线近场测量场景。两种技术都利用对天线尺寸的先验知识,基于对测量场的空间滤波。第一种方法利用了被测场的球面波扩展的空间滤波特性。第二种方法是基于等效电流的重构,并且由于重构表面的选定大小和形状的直接结果而实现了空间滤波。使用在平面和球形近场扫描几何结构中的两个不同喇叭的测量数据进行了研究。通过在消声室中引入已知的散射物体并与无干扰的参考情况进行比较,可以控制测量中回声污染的存在和水平。

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