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Radiation center estimation from near-field data using a direct and an iterative approach

机译:使用直接和迭代方法根据近场数据估算辐射中心

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Spherical Near-Field (SNF) measurements are an established technique for the characterization of an Antenna Under Test (AUT). The normal sampling criterion follows the Nyquist theorem, taking equiangular samples. The sampling step size depends on the smallest sphere that, centered in the coordinate system of the measurement, encloses the AUT, i.e. the global minimum sphere. In addition, a local minimum sphere can be defined as the sphere with minimum radius which, centered in the AUT, encloses it alone. The local minimum sphere is always equal or smaller than the global minimum sphere, being equal when the AUT is centered in the coordinate system of the measurement. It is implied that the center of the local minimum sphere coincides with the radiation center. In this paper, the relative position of the radiation center of an AUT with respect to the center of the coordinate system of the measurement is estimated from SNF data using two approaches. The first approach takes the phase center as an estimation of the radiation center and is based on the method of moving reference point, strictly valid for the far-field case only. The second approach is based on a spherical modes spectrum analysis, iteratively translating the Spherical Wave Expansion (SWE) until the convergence criterion is met. Both methods are applied on undersampled systems by simulation for different cases and antennas. The estimation error of both methods is compared and discussed, highlighting the convenience of each method and an application with compressed sensing techniques.
机译:球形近场(SNF)测量是一种用于表征被测天线(AUT)的成熟技术。正常采样准则遵循Nyquist定理,采用等角样本。采样步长取决于以测量坐标系为中心的最小球体,该球体包围了AUT,即全局最小球体。此外,可以将局部最小球体定义为半径最小的球体,该球体以AUT为中心,单独将其包围。局部最小球面始终等于或小于全局最小球面,当AUT以测量坐标系为中心时,局部最小球面是相等的。暗示局部最小球的中心与辐射中心重合。在本文中,使用两种方法根据SNF数据估算AUT辐射中心相对于测量坐标系中心的相对位置。第一种方法将相位中心作为辐射中心的估计值,并且基于移动参考点的方法,该方法仅对远场情况严格有效。第二种方法基于球模频谱分析,迭代转换球面波扩展(SWE)直到满足收敛标准。通过针对不同情况和天线的仿真,两种方法都适用于欠采样系统。比较和讨论了两种方法的估计误差,突出了每种方法的便利性以及具有压缩传感技术的应用。

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