压缩球面近场测量中的实际考虑

C. Culotta-López, B. Walkenhorst, Quang Ton, D. Heberling
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引用次数: 2

摘要

球面近场(SNF)测量的主要缺点是测量时间较长,因为计算远场计算所需的球面模态系数(SMCs)需要对包围被测天线(AUT)的整个球体进行扫描。由于smc在某些条件下被证明是稀疏的,因此人们努力应用压缩感知技术,通过获取更少的采样点来减少测量时间。这些方法已经成功地在模拟中使用经典的测量数据进行了测试。这将测量从实际问题中解耦,例如由于机械定位器的有限精度和环境影响而导致的基错配。本文报告了在物理系统上进行稀疏数据采集的结果。为了将方法本身引入的误差与测量系统中的非理想性引入的误差解耦,采用传统的近场采样和压缩近场采样来测量AUT。用经典采集的数据作为参考和源,模拟了一个综合压缩测量。通过将合成压缩测量值与获取的测量值进行比较来计算实际考虑因素所带来的影响,并通过与参考测量值的比较来评估两者的误差。结果进一步证明了该方法加速SNF测量的可行性,并为进一步的研究铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical Considerations in Compressed Spherical Near-Field Measurements
The major drawback of Spherical Near-Field (SNF) measurements is the comparatively long measurement time, since the scanning of a whole sphere enclosing an Antenna Under Test (AUT) is required to calculate the Spherical Mode Coefficients (SMCs) required for the computation of the far field. Since the SMCs prove to be sparse under certain conditions, efforts have been made to apply compressed-sensing techniques to reduce the measurement time by acquiring a smaller number of sampling points. These approaches have been successfully tested in simulation using classically acquired measured data. This decouples the measurements from practical problems, such as basis mismatch due to the finite precision of the mechanical positioner and environment effects. In this paper, results from a sparse data acquisition performed with a physical system are reported. To decouple the error introduced by the approach itself from the error introduced by non-idealities in the measurement system, an AUT is measured using both traditional near-field sampling and compressed near-field sampling. The classically acquired data is used both as reference and as source to simulate a synthetic compressed measurement. The effects introduced by real considerations are calculated by comparison between the synthetic compressed measurement and the acquired one, while the error of both is evaluated by comparison to the reference measurement. The results further demonstrate the viability of this method to accelerate SNF measurements and pave the way for further research.
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