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首页> 外文期刊>IEEE Antennas & Propagation Magazine >A new look at phaseless planar near-field measurements: limitations, simulations, measurements, and a hybrid solution
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A new look at phaseless planar near-field measurements: limitations, simulations, measurements, and a hybrid solution

机译:无相平面近场测量的新视角:限制,模拟,测量和混合解决方案

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摘要

In this paper, we have revisited the phase-retrieval problem for planar near-field antenna measurements. It will be shown that the complexity of retrieval procedures is a function not only of the independency of different sets of measurements, but also of the characteristics of the antenna under test (AUT). Antenna-pattern features, such as its beam direction, will have a profound effect on the success of phase-reconstruction algorithms. The failure of a well-known phase-retrieval method, the iterative Fourier technique, is investigated for a case where the antenna has a scanned beam. It is found that this is due to a less-than-optimum choice of the initial guess. To alleviate the deficiency of the iterative Fourier technique, a simple but effective initial guess is sought by the use of the differential evolutionary algorithm. This global search technique tries to find the best initial phase guess that minimizes an error criterion. Subsequently, this best guess is fed to the iterative Fourier phase-retrieval routine for further phase refinements. Having done this, the far-field can subsequently be constructed. The improvement in the phase-reconstruction algorithm is examined through a series of simulations and measurements.
机译:在本文中,我们重新审视了平面近场天线测量的相位检索问题。将显示,检索过程的复杂度不仅取决于不同测量集的独立性,而且还取决于被测天线(AUT)的特性。天线方向图的特征(例如其波束方向)将对相位重建算法的成功产生深远影响。对于天线具有扫描波束的情况,研究了众所周知的相位检索方法(迭代傅里叶技术)的失败。发现这是由于初始猜测的选择不理想。为了减轻迭代傅立叶技术的不足,通过使用差分进化算法寻求一种简单而有效的初始猜测。这种全局搜索技术试图找到最小化误差准则的最佳初始相位猜测。随后,将此最佳猜测输入到迭代傅里叶相位检索例程中,以进行进一步的相位优化。完成此操作后,便可以构建远场。通过一系列仿真和测量,研究了相位重构算法的改进。

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