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Approximate Calculation of Time-Domain Effective Height for Aperture Antennas

机译:孔径天线时域有效高度的近似计算

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The time-domain (TD) effective height is a space-time vector operator recently introduced to describe the performance of ultrawide-band antennas. Since generally obtained by measurements or intensive numerical modeling, it is represented through a large set of data not very suitable to the evaluation of the whole TD link. For the particular class of aperture-radiating antennas of separable shapes, such as slot, open-ended waveguides and horns, this paper proposes a systematic TD processing of the aperture field, involving model-based deconvolution and parameter estimation, at the purpose of an efficient calculation and a more manageable representation of the effective height. Following the idea at the base of modal near to far field transformation, as previously presented by the authors, the processing of the aperture impulse response is here addressed with a particular care to the fast varying early transient. The corresponding time-dependent Radon transforms are then approximated by semi-analytical formulas whose accuracy is discussed as for the aperture size and frequency limits. The proposed methods, which are much faster than the conventional approach, are demonstrated by some examples.
机译:时域(TD)有效高度是最近引入的时空矢量运算符,用于描述超宽带天线的性能。由于通常是通过测量或密集的数值建模获得的,因此它通过非常不适合评估整个TD链路的大量数据来表示。对于特定形状的可分离形状的孔径辐射天线,例如缝隙,开放式波导和喇叭,本文提出了孔径场的系统TD处理,涉及基于模型的去卷积和参数估计,目的是有效的计算和有效高度的更易于管理的表示。正如作者先前提出的那样,遵循了模态近场到远场转换的思想,在此特别注意快速变化的早期瞬变,从而处理孔径脉冲响应。然后,通过半解析公式对相应的随时间变化的Radon变换进行近似,其精度将针对孔径大小和频率限制进行讨论。通过一些示例证明了所提出的方法比传统方法要快得多。

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