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Antenna Physical Poles Extracted From Measured Backscattered Fields

机译:从测得的反向散射场中提取天线物理极

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This paper presents a new approach to extract the physical poles of antennas. The singularity expansion method (SEM) allows modeling the antenna backscattering using poles which are theoretically independent of the wave incident angle, making them useful for antenna identification. Nevertheless, only the physical poles respect this property while the spurious poles change for each incident angle. Indeed, we call the poles linked to the antenna itself as “physical” and the poles linked to anything but the antenna as “spurious”(excitation, noise, etc.). The goal of this paper is to highlight the method to define the optimal time windowing applied on the antenna backscattering in order to obtain the physical poles of the antenna. The approach is based on the window decreasing technique (WDT) and the window increasing technique. The SEM is applied on the backscattered field measured in the boresight direction of three antennas: 1) a narrowband patch antenna; 2) a wideband helix antenna; and 3) a UWB antenna. Using these poles to reconstruct the field backscattered in several directions, we show that the poles extracted from one direction with this new approach are relevant to reconstruct the backscattered field for any other directions. Moreover, we show that these poles can be extracted directly from these other directions.
机译:本文提出了一种提取天线物理极点的新方法。奇异扩展方法(SEM)允许使用理论上与波入射角无关的极点对天线反向散射进行建模,从而使其可用于天线识别。但是,只有物理极点才尊重此属性,而虚假极点会针对每个入射角而变化。实际上,我们将与天线本身相连的极点称为“物理”,将与天线以外的任何东西相连的极点称为“寄生”(激励,噪声等)。本文的目的是强调一种方法,该方法定义应用于天线反向散射的最佳时间窗,以获得天线的物理极点。该方法基于窗口减小技术(WDT)和窗口增大技术。 SEM应用于在三个天线的视轴方向上测得的反向散射场:1)窄带贴片天线; 2)宽带螺旋天线;和3)UWB天线。使用这些极点来重构在多个方向上反向散射的场,我们表明,使用这种新方法从一个方向提取的极点与重构其他方向上的反向散射场有关。而且,我们表明这些极点可以直接从其他方向提取。

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