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Double phi-Step theta-Scanning Technique for Spherical Near-Field Antenna Measurements:Double ϕ-Step θ-Scanning Technique for Spherical Near-Field Antenna Measurements

机译:用于球面近场天线测量的双phi-stepθ扫描技术:用于球面近场天线测量的双φ步进θ扫描技术

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摘要

Probe-corrected spherical near-field antenna measurements with an arbitrary probe set certain requirements on an applicable scanning technique. The computational complexity of the general high-order probe correction technique for an arbitrary probe, that is based on the Phi scanning, is O(N4), where N is proportional to the radius of the antenna under test (AUT) minimum sphere in wavelengths. With the present knowledge, the computational complexity of the probe correction for arbitrary probes in the case of the thetas scanning is O(N-6), which is typically not acceptable. This paper documents a specific double Phi-step thetas scanning technique for spherical near-field antenna measurements. This technique not only constitutes an alternative spherical scanning technique, but it also enables formulating an associated probe correction technique for arbitrary probes with the computational complexity of 0(N4) while the possibility for the exploitation of the advantages of the thetas scanning are maintained.
机译:使用任意探头进行探头校正的球形近场天线测量对适用的扫描技术提出了某些要求。基于Phi扫描的任意探针的常规高阶探针校正技术的计算复杂度为O(N4),其中N与波长下被测天线(AUT)最小球的半径成比例。根据目前的知识,在θ扫描的情况下,任意探针的探针校正的计算复杂度为O(N-6),这通常是不可接受的。本文介绍了一种特殊的双Phi-step theta扫描技术,用于球形近场天线测量。该技术不仅构成了一种可选的球形扫描技术,而且还使得能够为计算复杂度为0(N4)的任意探针制定相关的探针校正技术,同时保持了利用theta扫描优势的可能性。

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  • 作者

    Laitinen Tommi;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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